Дисертації з теми "Dynamical temperature measurement"

Щоб переглянути інші типи публікацій з цієї теми, перейдіть за посиланням: Dynamical temperature measurement.

Оформте джерело за APA, MLA, Chicago, Harvard та іншими стилями

Оберіть тип джерела:

Ознайомтеся з топ-39 дисертацій для дослідження на тему "Dynamical temperature measurement".

Біля кожної праці в переліку літератури доступна кнопка «Додати до бібліографії». Скористайтеся нею – і ми автоматично оформимо бібліографічне посилання на обрану працю в потрібному вам стилі цитування: APA, MLA, «Гарвард», «Чикаго», «Ванкувер» тощо.

Також ви можете завантажити повний текст наукової публікації у форматі «.pdf» та прочитати онлайн анотацію до роботи, якщо відповідні параметри наявні в метаданих.

Переглядайте дисертації для різних дисциплін та оформлюйте правильно вашу бібліографію.

1

Mielke, Amy Florence. "DEVELOPMENT OF A MOLECULAR RAYLEIGH SCATTERING DIAGNOSTIC FOR SIMULTANEOUS TIME-RESOLVED MEASUREMENT OF TEMPERATURE, VELOCITY, AND DENSITY." Case Western Reserve University School of Graduate Studies / OhioLINK, 2008. http://rave.ohiolink.edu/etdc/view?acc_num=case1196429607.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
2

Oswald, Elbrecht. "Indirect measurement of reactor fuel temperature." Thesis, Stellenbosch : University of Stellenbosch, 2010. http://hdl.handle.net/10019.1/4145.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Thesis (MScEng (Mechanical and Mechatronic Engineering))--University of Stellenbosch, 2010.
ENGLISH ABSTRACT: Regulators and designers of nuclear reactors regard knowledge of the pebble fuel temperature as important, due to the role that it plays in maintaining structural integrity and the production of neutrons. By using special fuel assemblies fitted with measuring equipment it is possible to measure the fuel temperature in stationary fuel reactors. This, however, is not possible in the pebble bed modular reactor due to its dynamic core. Designers of the pebble bed modular reactor have reserved special inspection channel borings inside the center reflector for fuel temperature measurement. By means of optical fibers and interferometry, the temperature can be measured inside such a channel. Currently the only way to control the fuel surface and core temperature is by measuring the gas inlet and outlet temperatures. This thesis attempts to determine the pebble temperature by measuring the temperature in a reflector channel. This is done by constructing an electrically heated pebble bed experimental setup simulating a cutout section of a pebble bed modular reactor core. An additional computational fluid dynamics simulation of the experimental setup was also performed. This thesis also attempts to determine if there is a measureable temperature peak that can indicate where a pebble was in contact with the reflector surface. This could then be used in future studies to determine the pebble fuel velocity as it moves down the reactor core. The computational fluid dynamics results were validated by experimental measurements. In the computational fluid dynamics model and experimental setup, it was found that there was indeed a measureable temperature difference on the temperature gradient along the reflector wall. The heat being conducted away from the pebble through the contact area can explain this. These differences were only observed when the channel was moved closer to the pebbles and it is therefore advised that some redesigning of the channel should be done if the in-core temperature is to be accurately interpreted by the designers at PBMR (Pty) Ltd.
AFRIKAANSE OPSOMMING: Reguleerders en ontwerpers van kern reaktore beskou die kennis van die korrel brandstof temperatuur as belangrik. Dit is weens die rol wat die brandstof temperatuur speel met die behoud van strukturele integriteit en die produksie van neutrone binne-in die reaktor. Met behulp van spesiale brandstof montasies toegerus met die meetings instrumentasie, is dit moontlik om die brandstof temperatuur in stilstaande brandstof reaktore te meet. Dit is egter nie moontlik in die korrel bed modulêre reaktor nie, as gevolg van sy dinamiese kern. Ontwerpers van die korrel bed modulêre reaktor het spesiale kanale in die binnekant van die middel reflektor vir brandstof temperatuur meeting gereseveer. Deur middel van optiese vesel en interferometrie, kan die temperatuur binne so 'n kanaal gemeet word. Tans is die enigste manier om die brandstof-oppervlak temperatuur te berekern, net moontlik deur gebruik te maak van die gemete gas inlaat-en uitlaat temperature van die reaktor. Hierdie tesis poog om vas te stel of die korrel brandstof temperatuur deur die meet van die oppervlak temperatuur in 'n reflektor-kanaal bepaal kan word. Dit word gedoen deur 'n elektriese verhitte korrel bed eksperimentele opstelling te bou wat 'n gedeelte van 'n korrel bed modulêre reaktor simuleer. 'n Bykomende numeriese simulasie van die eksperimentele opstelling was ook uitgevoer. Hierdie werk het ook probeer om vas te stel of daar 'n meetbare temperatuur piek op die temperatuur profiel aandui kan word waar 'n korrel in kontak is met die reflektor se oppervlak. Dit kan dan in toekomstige studies gebruik word om te bepaal wat die korrel brandstof spoed was soos dit in die reaktor beweeg. Die numerise simulasie uitslae was deur eksperimentele metings bevestig. In die numerise simulasie model en die eksperimentele opstelling, is daar gevind dat daar inderdaad 'n meetbare temperatuur verskil op die temperatuurgradiënt teen die reflektor oppervlak is. Dit kan verduidelik word as gevolg van die hitte wat weg van die korrel gelei word deur middel van die kontak area. Hierdie verskille was slegs waargeneem wanneer die kanaal nader aan die korrels geskuif is en dit word as n aanbeveling aan PBMR (Pty) Ltd gemaak om sommige herontwerpe aan die kanaal te doen indien die in-kerntemperatuur gemeet wil word en akkuraat geinterpreteer wil word.
3

Grossman, Hy. "A New Standard for Temperature Measurement in an Aviation Environment." International Foundation for Telemetering, 2010. http://hdl.handle.net/10150/604311.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
ITC/USA 2010 Conference Proceedings / The Forty-Sixth Annual International Telemetering Conference and Technical Exhibition / October 25-28, 2010 / Town and Country Resort & Convention Center, San Diego, California
Accurate temperature measurement is an essential requirement in modern aircraft data acquisition systems. Both thermocouples and Platinum resistance temperature detectors (RTD) are used for this purpose with the latter being both more accurate and more repeatable. To ensure that only the sensor limits the accuracy of a temperature measurement, end-to-end system accuracy forward of the sensor, should be significantly greater than that of the sensor itself. This paper describes a new digital signal processing (DSP) based system for providing precision RTD based temperature measurements with laboratory accuracy in an aviation environment. Advantages of the new system include, true 3-wire RTD measurement, linear temperature output, on-board ultra-precision resistance standards and transparent dynamic calibration.
4

Gao, Furong. "Measurement, dynamics and control of the mold temperature of injection molding." Thesis, McGill University, 1989. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=62000.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
5

Abboud, Rita. "Méthode de mesure sans contact de la température intégrée au rotor d’une machine électrique tournante au moyen d’une fibre optique à réseaux de Bragg." Thesis, Compiègne, 2021. http://www.theses.fr/2021COMP2645.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Dans le domaine des systèmes de transport, des problèmes de chauffage apparaissent avec l'augmentation de la température dans différents types de machines électriques. Dans la conception classique des machines électriques, l'analyse thermique doit être prise en compte dans la conception initiale, le contrôle et la surveillance des machines électriques. La mesure de la température locale, en particulier dans le rotor, est importante pour plusieurs raisons telles que l'extension de la durée de vie des composants de la machine électrique et la localisation des points chauds à l'intérieur de la machine, ce qui permet de développer des systèmes de refroidissement appropriés et de protéger la machine. De nombreuses approches pour la mesure de la température peuvent être utilisées telles que les thermocouples, les thermistances, les capteurs infrarouges ou les caméras infrarouges. Cette thèse présente une technique sans contact qui mesure la température du rotor d'une machine tournante en utilisant un capteur à réseaux de Bragg (FBGs). La surveillance de la température locale, en particulier à l'intérieur du rotor, est importante afin de détecter le vieillissement thermique précoce de la machine. Les points chauds dans les parties rotatives peuvent être localisés en utilisant cette technique. L'originalité principale du travail proposé est de mesurer des températures élevées (70°C) avec une vitesse de rotation élevée (860 RPM) des machines tournantes et surtout d'intégrer le capteur FBG dans un rotor électrique de véhicules à petite échelle géométrique. La réponse du capteur FBG a été simulée en utilisant la méthode de la matrice de transfert (TMM). Ensuite, le FBG a été calibré en utilisant un four de chauffage fabriqué dans notre laboratoire et la température a été modifiée de 20 °C à 70 °C. Une machine rotative avec un FBG intégré a ensuite été conçue et fabriquée. La température du rotor a été modifiée pendant la rotation de la machine. Les décalages de longueur d'onde dus aux variations de température ont été mesurés expérimentalement jusqu'à 860 RPM. Une sensibilité à la température de 4.7 pm/°C a été atteinte expérimentalement. La capacité de ce capteur à surveiller les variations de température du rotor en temps réel a été validée expérimentalement
In the transportation system domain, heating problems appear with the temperature increase in different types of electrical machines. In the classical design of electrical machines, thermal analysis should be considered in the initial design, control and monitoring of electrical machines. The measurement of local temperature especially in the rotor is important for several reasons such as extending the lifetime of the electrical machine components, and localizing the hot spots inside the machine which allows the development of appropriate cooling systems and protects the machine. Numerous approaches for temperature measurement can be used such as thermocouples, thermistors, infrared sensors or infra-red cameras. This thesis presents a non-contact technique that measures the temperature of the rotor of a small machine using Fiber Bragg Gratings (FBGs) sensor. Monitoring local temperature especially inside the rotor is important in order to detect early thermal aging of the machine. Hot spot in the rotating parts can be localized by using this technique. The main originality of the proposed work is measuring high temperatures (70°C) with high speed of rotation (860 RPM) of rotating machines and most importantly integrating the FBG sensor into a geometrically small scale electrical rotor of vehicles. The FBG sensor response has been simulated using Transfer matrix method (TMM). After that, the FBG has been calibrated from 20 °C to 70 °C using a heating furnace fabricated at our laboratory. A small rotating machine with embedded FBG has then been designed and fabricated. The temperature of the rotor has been changed while rotating the machine and wavelength shifts due to temperature variations have been experimentally measured up to 860 RPM. A temperature sensitivity of 4.7 pm/°C have been experimentally reached. The ability of this sensor to monitor real time temperature variations of the rotor has been experimentally validated
6

Rothmeier, Greggory H. "Brain tissue temperature dynamics during functional activity and possibilities for optical measurement techniques." Digital Archive @ GSU, 2012. http://digitalarchive.gsu.edu/phy_astr_theses/14.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Regional tissue temperature dynamics in the brain are determined by the balance of the metabolic heat production rate and heat exchange with blood flowing through capillaries embedded in the brain tissue, the surrounding tissues and the environment. Local changes in blood flow and metabolism during functional activity can upset this balance and induce transient temperature changes. Invasive experimental studies in animal models have estab- lished that the brain temperature changes during functional activity are observable and a definitive relationship exists between temperature and brain activity. We present a theoreti- cal framework that links tissue temperature dynamics with hemodynamic activity allowing us to non-invasively estimate brain temperature changes from experimentally measured blood- oxygen level dependent (BOLD) signals. With this unified approach, we are able to pinpoint the mechanisms for hemodynamic activity-related temperature increases and decreases. In addition to these results, the potential uses and limitations of optical measurements are dis- cussed.
7

Osorno, Andres. "Dynamic, In-Situ Pressure Measurements during CMP." Thesis, Georgia Institute of Technology, 2005. http://hdl.handle.net/1853/7497.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
A rotational setup for measuring interfacial fluid pressure and temperature was successfully constructed. Interfacial fluid measurements were performed with various slurries, slurry flow rates, and pad topographies. It was experimentally determined that the pad topography has the biggest effect in pressure and temperature distribution. This was also confirmed by tilt experiments ran in a rotational environment. For all cases, the edge high conditioned pad displayed the most changes during the experiments. For an edge high conditioned pad, the fluid pressure was found to be mostly subambient reaching levels of up to 42 kPa at the center of the fixture, and dissipating towards the edges. The pressure maps appear to be almost center symmetric. The pressure was found to be positive during the first second of contact, and rapidly turn subambient. The Subambient pressures stabilize after about 5 seconds, and their suction force was found to slow the rotating platen significantly. Suction forces were confirmed by displacement observed during the tilt experiments. The fixtures center was sucked down into the pad up to 20 m, and tends to tilt towards the leading edge. Interfacial temperatures were also found to vary with pad geometry. The edge-high conditioned pad exhibited changes of up to 4 C, concentrated at the center. The relative position and shape of these temperature rises matches the results observed in the pressure experiments. Temperature takes a longer time to reach equilibrium, up to 30 seconds in most measurements.
8

Gu, Yuxing. "Measurements of temperature and density profiles of iodine vapor between parallel plates in the transition regime using laser induced fluorescence /." free to MU campus, to others for purchase, 2000. http://wwwlib.umi.com/cr/mo/fullcit?p9974999.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
9

Khuc, Mai. "Measurement of cicular dichroism dynamics in a temperature jump experiment for the study of protein folding." Palaiseau, Ecole polytechnique, 2011. https://pastel.hal.science/docs/00/65/62/01/PDF/These_Mai-Thu_KHUC.pdf.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
La question de savoir comment les protéines se replient dans leur propre structure tridimentionnelle offre un défi passionnant pour les biophysiciens de nos jours. L'utilisation d'un saut de température rapide est une technique très puissante pour l'étude du processus de dénaturation des protéines. Toutefois, sonder la structure secondaire est un défi difficile et on obtient rarement des valeurs quantitatives. Le but principal de ce projet de thèse est de développer une mise en œuvre technique de dichroïsme circulaire dans l'UV extrême dans une expérience de saut de température nanoseconde. Notre expérience permet de suivre quantitativement l'évolution de la fraction hélicoïdale d'un peptide poly(acide glutamique) au cours de sa dénaturation thermique avec une résolution de 12 ns de temps
The question how proteins fold into their specific three-dimentional structures provides an exciting challenge for biophysicists nowadays. The use of a fast temperature-jump is a very powerful technique for the study of the denaturation process of proteins. However, probing the secondary structure is a difficult challenge and rarely yields quantitative values. The main purpose of this PhD project is to develop a technical implementation of far-UV circular dichroism in a nanosecond T-jump experiment. Our CD/T-jump experiment allows us to follow quantitatively the change in the helical fraction of a poly(glutamic acid) peptide during its thermal denaturation with 12 ns time resolution
10

Fallah, Haghmohammadi Hamidreza. "Fever Detection for Dynamic Human Environment Using Sensor Fusion." Thesis, Université d'Ottawa / University of Ottawa, 2018. http://hdl.handle.net/10393/37332.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
The objective of this thesis is to present an algorithm for processing infrared images and accomplishing automatic detection and path tracking of moving subjects with fever. The detection is based on two main features: the distinction between the geometry of a human face and other objects in the field of view of the camera and the temperature of the radiating object. These features are used for tracking the identified person with fever. The position of camera with respect to direction of motion the walkers appeared to be critical in this process. Infrared thermography is a remote sensing technique used to measure temperatures based on emitted infrared radiation. This application may be used for fever screening in major public places such as airports and hospitals. For this study, we first look at human body and objects in a line of view with different temperatures that would be higher than the normal human body temperature (37.8C at morning and 38.3C at evening). As a part of the experimental study, two humans with different body temperatures walking a path were subjected to automatic fever detection applied for tracking the detected human with fever. The algorithm consists of image processing to threshold objects based on the temperature and template matching used for fever detection in a dynamic human environment.
11

Takeyama, Mao. "Convective heat transfer of saturation nucleate boiling induced by single and multi-bubble dynamics." Kyoto University, 2021. http://hdl.handle.net/2433/261621.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
12

Nastic, Aleksandra. "Cold Gas Dynamic Spray Impact: Metallic Bonding Pre-Requisites and Experimental Particle In-Flight Temperature Measurements." Thesis, Université d'Ottawa / University of Ottawa, 2021. http://hdl.handle.net/10393/42086.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
The impact phenomena of high velocity micron-size particles, although commonly considered and described as detrimental in numerous engineering applications, can be used in a beneficial way if properly understood and controlled. The Cold Gas Dynamic Spray (CGDS) process, known as a surface modification, repair and additive manufacturing process, relies on such high velocity impacts. In the process, solid particles are accelerated by a supersonic gas flow to velocities up to 1200 m/s and are simultaneously heated to temperatures lower than their melting point. When propelled under proper velocity and temperature, the particles can bond onto a target surface. This bonding is caused by the resulting interfacial deformation processes occurring at the contact interface. Hence, the process relies heavily on the gas/particle and particle/substrate interactions. Although numerous experimental and/or numerical studies have been performed to describe the phenomena occurring during particle flight and impact in the CGDS process, numerous phenomena remain poorly understood. First, the effect of substrate surface topographical condition on the particle deformation and ability to successfully adhere, i.e. atomically and/or mechanically, has not been thoroughly investigated such that its influence is not well understood. Another aspect of the process that is generating the largest gap between experimental and numerical studies in the field is the lack of particle in-flight temperature measurements. Obtaining such data has proven to be technically difficult. The challenges stem from the short particle flight time, low particle temperature and small particle size preventing the use of established thermal spray pyrometry equipment. Relatedly, lack of such measurements precludes a proper experimental study of the impact related phenomena at the particle/substrate interface. As a result, the effect of particle size dependent temperature on overall coating properties and atomic bonding relies currently on estimates. Finally, the effect of particle impact characteristics on interfacial phenomena, i.e. grain size and geometry, velocity/temperature, and oxide scale thickness, on adhesion and deformation upon single particle collision has also been scarcely studied for soft particle depositions on hard substrate. Hence, the current research work aims at studying fundamental aspects of particle/gas heat transfer and particle/substrate impact features in goals to improve the understanding of the CGDS process. Different surface preparation methods will be used to create various surface roughness and topographical features, to provide a clear understanding of the target surface state influence on coating formation and adhesion. Additionally, new equipment relying on novel technology, i.e. high-speed IR camera, will be utilized to obtain particle in-flight temperature readings with sequence recordings. Subsequently, the experimental particle in-flight temperature readings will be used to develop a computational fluid dynamics model in goals to validate currently used Nusselt number correlations and heat transfer equations. The particle size-dependent temperature effect on the particle’s elastic and plastic response to its impact with a targeted surface and its ability to successfully bond and form a coating will be studied experimentally. A thorough CFD numerical work, based on experimental findings, will be included to provide full impact characteristics (velocity, temperature, size and trajectory) of successfully deposited particles. Finally, the numerical results will be utilized in the ensuing study to correlate single particle deformation, adhesion and interfacial features to impact characteristics. A finite element model will be included to investigate the effect of particle size dependent temperature on single particle interfacial pressure, temperature and bonding ability.
13

Thomas, Zachary M. (Zachary Michael). "Dielectrometry measurements of moisture diffusion and temperature dynamics in oil impregnated paper insulated electric power cables." Thesis, Massachusetts Institute of Technology, 2007. http://hdl.handle.net/1721.1/40329.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer Science, 2007.
This electronic version was submitted by the student author. The certified thesis is available in the Institute Archives and Special Collections.
Vita.
Includes bibliographical references (p. 439-449).
Paper insulated lead covered (PILC) cables have played an important role in underground power distribution for a hundred years. Replacing aged PILC before failure is critical to managing power distribution. Three prominent failure mechanisms accelerate cable aging: temperature stresses, moisture ingress, and partial discharge. The research focuses on the effect of temperature and moisture on the effective (complex) permittivity of the cable insulation. Measurements are performed using cylindrical dielectrometry sensors designed to be wrapped around the cable. The lead sheath of the cable is removed so that the sensors can be placed directly in contact with the insulation. From the measurements, the electrical properties of the material as a function of temperature and transient moisture diffusion are found. A theoretical treatment of the interdigital dielectrometry sensors with a cylindrical geometry is presented. Two classes of the geometry are studied. The periodic sensor geometry has electrodes aligned with the cylindrical axis and periodic around the circumference. The z periodic sensor geometry has the electrodes forming rings around the cylinder that are periodic along the cylindrical axis. The material is modeled by concentric rings of homogeneous materials. The electric field solution consists of an infinite summation of Fourier series terms. In finding the field solution and as a consequence of it, the potential, electric field lines, and the impedance between the driving and sensing electrodes are found. A generalized solution to the planar dielectrometry sensor topology is also presented. This solution allows for an arbitrary placement and excitation of electrodes, providing the analytical tools for a new generation of sensors.
(cont.) Dielectrometry sensors for use in and z periodic geometries are designed and manufactured on a 4 mil PTFE substrate. An experimental setup is designed and built to provide a temperature and humidity controlled environment for measurements. Special clamping mechanisms are used to secure the sensor to the sample. Custom built hardware is used to excite the sensor at frequencies ranging from 0.005 Hz to 10,000 Hz (over six decades), measure and record the response, and deliver it to a computer for storage and analysis. Steady state measurements are performed at temperatures ranging from room temperature to 100 C. Plastics, woods, and the PILC cable samples are measured. Using the theoretical model, the effective permittivity is estimated from the measurements. An Arrhenius temperature dependence is observed for several materials including the PILC cables. We characterize the temperature dependence of these materials by a master curve and activation energy. Together they give a complete description of the effective permittivity's frequency and temperature dependence. Transient measurements of moisture diffusion are made at constant temperatures for several materials. For some experiments the boundary conditions limit the diffusion of moisture to one direction. When the z periodic sensor is used, six independent measurements are taken along the direction of diffusion. From the initial and final conditions and the theoretical model, a mapping between the electrical properties and the insulation moisture content is formed. Moisture concentration along the direction of diffusion is estimated and in some cases characterized by a simple diffusion coefficient.
(cont.) The diffusion experiments provide evidence that moisture can move rapidly through the stranded conductors of the cables, delivering moisture to locations far removed from an initial breach. The experimental results show the electrical properties of the cable insulation is highly sensitive to the presence of moisture and changes in temperature. While using these sensors for field measurements may not be practical because they require the cable sheath to be removed, the technology provides a valuable, low cost tool for assessing cable health in an off-line setting.
by Zachary M. Thomas.
Ph.D.
14

Leimkuehler, Thomas O. "Investigation of low-pressure laser induced fluorescence for measuring temperature profiles in a rarefied gas /." free to MU campus, to others for purchase, 2000. http://wwwlib.umi.com/cr/mo/fullcit?p9999301.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
15

Yang, Yang. "Phytoplankton and Physical Disturbance : Seasonal dynamics in temperate Lake Erken, Sweden." Doctoral thesis, Uppsala universitet, Limnologi, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-262461.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Phytoplankton mirrors changes in the environment and plays an important role in biogeochemical processes. Phytoplankton dynamics is the outcome of both autogenic succession and external disturbances. This thesis focused on the seasonal variation of water column stability and its effects on phytoplankton, particularly considering the influence of mixing events on phytoplankton development. Lake Erken is a dimictic lake with weak and often interrupted summer stratification, which represents an intermediate case between a polymictic lake and a lake with strong summer stratification. There are two diatom phases annually. The spring bloom is caused by pioneer centric diatoms, and the autumn diatom phase is dominated by meroplanktonic diatoms induced by turnover. A summer Cyanobacteria bloom – mainly Gloeotrichia echinulata, depended on the length and stability of stratification. Winter and spring air temperature is found to play an important role in the annual succession of phytoplankton by initiating changes in ice/snow-cover and lake thermal stability and setting the basic status. Instead of starting from zero, the vernal phytoplankton piles up on the overwintering community, this trans-annual ecological memory influences both the composition and diversity and taxonomic distinctness of spring phytoplankton. Water column stability during summer in Lake Erken is mainly influenced by wind-induced turbulence and internal seiches. As thermal stratification develops from early until late summer, variations in stability and gradual deepening of the thermocline depth influence phytoplankton dynamics directly by changing its distribution, and also indirectly by altering the nutrient and light availability. A new disturbance index (DI) was defined to quantify environmental stability/disturbance and tested well to indicate phytoplankton equilibrium status in two summer stratification periods. The concept of species and functional groups was generally used in this study. However, a next generation sequencing based approach was also tested and proved to provide an excellent candidate for revealing distribution patterns of phytoplankton in inland waters.
16

Becker, William J. "Dynamic surface temperature measurement on the first stage turbine blades in a turbofan jet engine test rig." Thesis, Virginia Tech, 1988. http://hdl.handle.net/10919/43743.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Turbine blade surface temperatures were studied during transient operation in a turbofan engine test rig. A single fiber radiation pyrometer was used to view the suction side of the blades from approximately 60 percent axial chord to the trailing edge at an average radial location of 70 percent blade height. A single ceramic-coated blade produced a once-per-revolution signal that allowed for the tracking of individual blades during the transients. The investigation concentrated on the light-off starting transient and the transients obtained during accelerating and decelerating between power settings. During starting and acceleration transients, the blade surface temperature gradient was observed to reverse. This phenomenon was most apparent during starting when the trailing edge was initially much hotter than the 60 percent chord location, resulting in large temperature gradients. In steady operation the trailing edge temperature was lower than the 60 percent chord location, and the gradients were less severe. During deceleration transients, the trailing edge cooled more rapidly than the 60 percent chord location. This resulted in larger temperature gradients than were seen in steady operation, but no profile inversion was observed. These temperature gradients and profile inversions represent a cycling of thermally-induced stresses which may contribute to low cycle fatigue damage. A simple one-dimensional heat transfer model is presented as a means of explaining the different heating rates observed during the transients.
Master of Science
17

Al-Ghasem, Adnan Mahmoud. "Measurement of rotordynamic coefficients for a high-speed flexure pivot tilting-pad bearing(load between pad) configuration." Texas A&M University, 2005. http://hdl.handle.net/1969.1/2415.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
This thesis presents the dynamic and static forced performance of a flexure-pivot tilting-pad bearing load between pad (LBP) configuration for different rotor speeds and bearing unit loadings. The bearing has the following design parameters: 4 pads with pad arc angle 72o and 50% pivot offset, pad axial length 0.0762 m (3 in), pad radial clearance 0.254 mm (0.010 in), bearing radial clearance 0.1905 mm (0.0075 in), preload 0.25 and shaft nominal diameter of 0.11684 m (4.600 in). The dynamic coefficients and the static performance parameters of the FPB have been compared with the theoretical predictions using the isothermal analysis from the rotordynamic software suite XLTRC2-XLTFPBrg. The bearing shows a small attitude angle, about 10o, which indicates small crosscoupling stiffnesses. The pad temperatures increase in the circumferential direction of rotation with speed and load. The pads maximum temperature was measured near the trailing edge. The dependency of the stiffness and damping coefficients on the excitation frequency has been studied. The frequency dependency in the dynamic coefficients was removed by introducing an added mass coefficient to the bearing model. The direct added mass coefficients were around 32 kg. The direct stiffness and damping coefficients increase with load, while increasing and decreasing with rotor speed, respectively. A small whirl frequency ratio (WFR) was found of about 0.15, and it decreases with load and increases with speed. A comparison between the dynamic stiffnesses using a Reynolds equation and the bulk-flow Navier-Stokes models with the experimental dynamic stiffnesses shows that the Reynolds model (even for laminar flows) is not adequate, and that the bulk-flow model should be used for rotordynamic coefficients prediction. The bulk-flow model in general predicts well the static performance parameters and the direct dynamic coefficients, and underpredicts the cross-coupled coefficients (overpredicts the stability).
18

Gudipati, Mithun. "Computational fluid dynamics simulations of basket and fuel cladding temperatures within a rail cask during normal transport." abstract and full text PDF (free order & download UNR users only), 2007. http://0-gateway.proquest.com.innopac.library.unr.edu/openurl?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&res_dat=xri:pqdiss&rft_dat=xri:pqdiss:1446432.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
19

Langelaan, Gijsbertus Guy. "Dynamic measurement of residual strains by x-ray diffraction in a metal matrix composite during rapid temperature cycling." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1997. http://www.collectionscanada.ca/obj/s4/f2/dsk2/ftp04/mq22339.pdf.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
20

Mahawan, Nikorn. "Ground and Satellite-based Measurement of Bangkok Intra-urban Temperature Dynamics in Relation to Human Comfort and Energy Demand." Thesis, University of Newcastle Upon Tyne, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.512186.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
21

Sakabe, Ayaka. "Methane dynamics in a temperate forest revealed by plot-scale and ecosystem-scale flux measurements." Kyoto University, 2015. http://hdl.handle.net/2433/199353.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Kyoto University (京都大学)
0048
新制・課程博士
博士(農学)
甲第19029号
農博第2107号
新制||農||1030(附属図書館)
学位論文||H27||N4911(農学部図書室)
31980
京都大学大学院農学研究科地域環境科学専攻
(主査)教授 谷 誠, 教授 北山 兼弘, 教授 川島 茂人
学位規則第4条第1項該当
22

Bureau, Jordan. "Nitrous oxide emissions by agricultural soils : effect of temperature dynamics ; up-scaling measurements from the plot to the landscape." Thesis, Orléans, 2017. http://www.theses.fr/2017ORLE2003/document.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Les sols agricoles sont la principale source du gaz à effet de serre N₂O. Ces émissions sont caractérisées par une variabilité spatiale et temporelle considérable, ce qui rend très difficile leur quantification. L’UR SOLS étudie depuis 2008 les émissions de N₂O dans une zone agricole du Centre de la France. Spécifiquement, nous avons étudié au laboratoire l’effet de la température sur ces émissions et développé une méthode permettant l’estimation des émissions de N₂O à l’échelle du paysage. De façon surprenante, nous avons observé que les émissions de N₂O n’augmentent pas systématiquement avec la température. L’indicateur Q₁₀ est apparu, pour les émissions de N₂O, variable avec le temps. L’utilisation de l’acétylène, inhibiteur de la réduction de N2O, a révélé que les processus biologiques de production et de consommation de N₂O répondent différemment à la température. Les émissions de N₂O mesurées au champ à l’aide de différentes techniques ont permis d’obtenir des résultats cohérents, avec des moyennes de 43 μg N- N₂O m⁻² h⁻¹ pour la méthode par eddy covariance, 37 μg N- N₂O m⁻² h⁻¹ pour la méthode de fast-box et 71 μg N- N₂O m⁻² h⁻¹ pour la méthode des chambres automatiques sur un blé fertilisé. Des méthodes d’attribution des flux ont été développées pour déterminer de façon exhaustive les variations spatiales et temporelles des émissions de N₂O avec élaboration de cartes originales d’émissions à l’échelle du paysage. L’ensemble de ces résultats pourra être utilisé pour le développement de modèles de fonctionnement des écosystèmes. Ils vont contribuer à quantifier les émissions de N₂O aux échelles adaptées pour les inventaires et les stratégies d’atténuation
The greenhouse gas N₂O is mainly emitted by soils. Soil emissions are characterized by considerable spatial and temporal variabilities that make their quantification very difficult. While soil N₂O emissions are studied on an agricultural area in the Central France by the UR SOLS since 2008, we specifically studied in the laboratory the effect of temperature on these emissions and also developed a method for upscaling N₂O emissions from the plot to the landscape scales. Surprisingly, N₂O emissions were observed not to increase with temperature. Q₁₀ values, describing N₂O emission sensitivity to temperature, were observed to change over time. The use of acetylene for inhibiting N₂O reduction has revealed that the biological processes involved in the N₂O production and its consumption respond differently to temperature variations. N2O fluxes measured in the field using several methods covering different scales of the landscape gave consistent results. The mean measured N₂O fluxes were 43 μg N- N₂O m⁻² h⁻¹ for the eddy covariance mast, 37 μg N- N₂O m⁻² h⁻¹ for the fast-box over a similar area, while it was 71 μg N- N₂O m⁻² h⁻¹ by the automatic chambers over a fertilized wheat field. Flux attribution methods were developed to determine both the spatial and temporal variability of the N₂O flux over a 1-km landscape, resulting in original maps of N₂O emissions at the landscape scale. All these results could be further used for developing ecosystem models. Both these ecosystems models and the methodologies hereby proposed for upscaling N₂O emissions will help in soil N₂O emission quantification at large scales, relevant to the inventories and mitigation strategies
23

Smith, Jarrod L. "Full-Field Measurement of the Taylor-Quinney Coefficient in Tension Tests of Ti-6Al-4V, Aluminum 2024-T351, and Inconel 718 at Various Strain Rates." The Ohio State University, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=osu1546452653747728.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
24

Moody, Seth Sinclair. "Development of Dynamic Thermal Performance Metrics for Eco-roof Systems." PDXScholar, 2013. http://pdxscholar.library.pdx.edu/open_access_etds/666.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
In order to obtain credit for an eco-roof in building energy load calculations the steady state and time-varying thermal properties (thermal mass with evapotranspiration) must be fully understood. The following study presents results of experimentation and modeling in an effort to develop dynamic thermal mass performance metrics for eco-roof systems. The work is focused on understanding the thermal parameters (foliage & soil) of an eco-roof, further validation of the EnergyPlus Green Roof Module and development of a standardized metric for assessing the time-varying thermal benefits of eco-roof systems that can be applied across building types and climate zones. Eco-roof foliage, soil and weather parameters were continuously collected at the Green Roof Integrated PhotoVoltaic (GRIPV) project from 01/20/2011 to 08/28/2011. The parameters were used to develop an EnergyPlus eco-roof validation model. The validated eco-roof model was then used to estimate the Dynamic Benefit for Massive System (DBMS) in 4 climate-locations: Portland Oregon, Chicago Illinois, Atlanta Georgia and Houston Texas. GRIPV30 (GRIPV soil with 30% soil organic matter) was compared to 12 previously tested eco-roof soils. GRIPV30 reduced dry soil conductivity by 50%, increased field capacity by 21% and reduced dry soil mass per unit volume by 60%. GRIPV30 soil had low conductivity at all moisture contents and high heat capacity at moderate and high moisture content. The characteristics of the GRIPV30 soil make it a good choice for moisture retention and reduction of heat flux, improved thermal mass (heat storage) when integrating an eco-roof with a building. Eco-roof model validation was performed with constant seasonal moisture driven soil properties and resulted in acceptable measured - modeled eco-roof temperature validation. LAI has a large impact on how the Green Roof Module calculates the eco-roof energy balance with a higher impact on daytime (measured - modeled) soil temperature differential and most significant during summer. DBMS modeling found the mild climates of Atlanta Georgia and Houston Texas with eco-roof annual DBMS of 1.03, 3% performance improvement above the standard building, based on cooling, heating and fan energy consumption. The Chicago Illinois climate with severe winter and mild spring/summer/fall has an annual DBMS of 1.01. The moderate Portland Oregon climate has a below standard DBMS of 0.97.
25

Van, Zyl Josebus Maree. "Numerical modeling and experimental investigation of the flow and thermal processes in a motor car vehicle underhood." Thesis, Link to the online version, 2006. http://hdl.handle.net/10019/1281.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
26

Ellgren, Alex. "Analysis of vortex movement in an YBCO thin film : Models of the vortex solid-to-liquid transition compared to a sensitive resistive measurement of a strongly pinned YBCO thin film." Thesis, KTH, Skolan för informations- och kommunikationsteknik (ICT), 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-140589.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
When a high-temperature superconductor transitions in the presence of a magnetic field, the resistance does not immediately go to zero. Instead, the transition is smoothed by the resistive effects of moving vortices so that perfect conductivity isn't reached until several K below Tc, where the vortices have frozen into a glass state. The properties of this glass depend mainly on the amount and correlation between impurities in the superconductor. This report describes a study of the glass transition in an YBCO thin film rich in uncorrelated impurities. The aim was to use sensitive resistive measurements to determine which of two models of this transition, the vortex glass model and the vortex molasses model, is more accurate. After evaluation, both models are found lacking and a third model is put forth. This model, which resembles the normal distribution, excellently describes the YBCO thin film case. When the new model is tested against data from similar measurements, an YBCO single crystal and a TlBaCaCuO thin film, the results are mixed. Further study is suggested to determine the model's range of validity.
27

Esmail, Adam Ashiq. "Charge dynamics in superconducting double dots." Thesis, University of Cambridge, 2017. https://www.repository.cam.ac.uk/handle/1810/270018.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
The work presented in this thesis investigates transitions between quantum states in superconducting double dots (SDDs), a nanoscale device consisting of two aluminium superconducting islands coupled together by a Josephson junction, with each dot connected to a normal state lead. The energy landscape consists of a two level manifold of even charge parity Cooper pair states, and continuous bands corresponding to charge states with single quasiparticles in one or both islands. These devices are fabricated using shadow mask evaporation, and are measured at sub Kelvin temperatures using a dilution refrigerator. We use radio frequency reflectometry to measure quantum capacitance, which is dependent on the quantum state of the device. We measure the quantum capacitance as a function of gate voltage, and observe capacitance maxima corresponding to the Josephson coupling between even parity states. We also perform charge sensing and detect odd parity states. These measurements support the theoretical model of the energy landscape of the SDD. By measuring the quantum capacitance in the time domain, we observe random switching of capacitance between two levels. We determine this to be the stochastic breaking and recombination of single Cooper pairs. By carrying out spectroscopy of the bath responsible for the pair breaking we attribute it to black-body radiation in the cryogenic environment. We also drive the breaking process with a continuous microwave signal, and find that the rate is linearly proportional to incident power. This suggests that a single photon process is responsible, and demonstrates the potential of the SDD as a single photon microwave detector. We investigate this mechanism further, and design an experiment in which the breaking rate is enhanced when the SDD is in the antisymmetric state rather than the symmetric state. We also measure the quantum capacitance of a charge isolated double dot. We observe 2e periodicity, indicating the tunnelling of Cooper pairs and the lack of occupation of quasiparticle states. This work is relevant to the range of experiments investigating the effect of non-equilibrium quasiparticles on the operation of superconducting qubits and other superconducting devices.
28

Voss-de, Haan Patrick. "Vortex dynamics in the high temperature superconductors YBa2Cu3O7 and Bi2Sr2CaCu2O8+d in low and high dissipative transport measurements Vortex-Dynamik in den Hochtemperatur-Supraleitern YBa2Cu3O7 und Bi2Sr2CaCu2O8+d in niedrig- und hochdissipativen Transportmessungen /." Stuttgart : Ibidem-Verl, 1999. http://ArchiMeD.uni-mainz.de/pub/2000/0030/diss.pdf.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
29

Voss-, de Haan Patrick [Verfasser]. "Vortex dynamics in the high temperature superconductors YBa2Cu3O7 and Bi2Sr2CaCu2O8+δ in low and high dissipative transport measurements = Vortex-Dynamik in den Hochtemperatur-Supraleitern YBa2Cu3O7 und Bi2Sr2CaCu2O8+δ in niedrig- und hochdissipativen Transportmessungen / by Patrick Voss- de Haan". Stuttgart : Ibidem-Verl, 1999. http://d-nb.info/959907491/34.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
30

Maraval, Damien. "Mesure dynamique de déformation par rétrodiffusion Brillouin spontanée B-OTDR." Thesis, Paris, ENST, 2017. http://www.theses.fr/2017ENST0023/document.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Aujourd’hui, trois technologies distinctes et complémentaires sont disponibles pour réaliser des mesures réparties de température, de déformation ou de vibration grâce à l’analyses des rétrodiffusion Raman, Brillouin et Rayleigh. Les besoins industriels actuels se portent sur la mesure répartie de déformation pour des infrastructures avec de longs linéaires, comme les canalisations, pour lesquelles une cartographie linéaire et en temps réel de leur état est demandée. Nous nous focalisons alors sur la conception d’un système de mesure Brillouin capable de mesurer de manière répartie et dynamique les déformations subies par une fibre optique. La méthode employée sera celle du flanc de frange ; elle a déjà été développée et expérimentée sur une architecture opto-électronique de type analyseur Brillouin (Brillouin-OTDA), nécessitant l’accès aux deux extrémités de la fibre optique. Dans notre cas, elle est implémentée sur une architecture fonctionnant en réflectométrie. Les résultats expérimentaux obtenus seront caractérisés et validés par la simulation des mesures de la déformation et du déplacement d’une canalisation supportée entre deux appuis simples ; un modèle mécanique, adapté à cette configuration et transposable sur des projets réels, est développé. Par le biais de partenaire industriels de Cementys, ce modèle est utilisé dans deux projets de surveillance de canalisation d’hydrocarbures dont les moyens d’installation et la finalité sont différents
Today, three distinct and complementary technologies are available for distributed temperature, strain or vibration measurements with the analysis of Raman, Brillouin and Rayleigh backscattered light. Current industrial needs are distributed strain measurements for linear infrastructures, such as pipelines, for which linear and real-time strain distribution is required. The research work aims to design a new distributed and dynamic strain measurement system based on the analysis of spontaneous Brillouin backscatter by reflectometry. Slope assisted technique is used to accelerate the measurement acquisition, currently limited to static events because of their actual principle of sweep frequency acquisition of the Brillouin backscattering spectrum. The experimental results are characterized and validated by the simulation of the measurements of the deformation and displacement of a pipe supported between two simple supports. A mechanical model, adapted to this configuration and transposable on real projects, is developed. Through Cementys industrial partner, this model is then used for two monitoring project of pipelines with different installation facilities and purpose
31

Didier, Herisson. "Mesure de relations de fluctuation-dissipation dans un verre de spin." Phd thesis, Université Paris Sud - Paris XI, 2002. http://tel.archives-ouvertes.fr/tel-00002055.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Ce travail de thèse présente un dispositif expérimental original permettant la mesure, dans des conditions comparables, des fluctuations de l'aimantation d'un échantillon et de sa réponse à un champ magnétique. Une comparaison quantitative permet, via le théorème de fluctuation-dissipation, une mesure absolue de la température lorsque l'échantillon est à l'équilibre thermodynamique. Pour des systèmes vitreux, la "température effective" ---une extension conservant le formalisme du théorème de fluctuation-dissipation de la température pour les système à faible production d'entropie--- est rendue accessible. Un échantillon "verre de spin" ($CdCr_{1,7}In_{0,3}S_4$) aux propriétés vitreuses étudiées depuis de nombreuses années a permis cette mesure. Le régime fortement vieillissant, non-stationnaire, est étudié; la mesure nécessaire des fluctuations thermiques est très délicates (l'amplitude de ces fluctuations correspond à la réponse de l'échantillon à des variations de l'ordre du millionième du champ magnétique terrestre).
Les résultats obtenus montrent en premier lieu une dynamique de quasi-équilibre, confirmant des résultats précédents. Le régime fortement vieillissant est maintenant également atteint. Toutefois, les mesures ne peuvent pas être traduites directement en terme de température effective, car expérimentalement, on observe systématiquement la coexistence d'une dynamique stationnaire et de la dynamique de vieillissement. Une analyse par scaling est proposée pour séparer ces deux contributions. Sous réserve de validité de cette analyse, les mesures confirment alors les principales caractéristiques attendues pour la température effective, et notamment son indépendance en fonction de l'âge du système.
Les différents modèles connus ne permettent cependant pas d'expliquer complètement toutes les caractéristiques de la température effective mesurée, certaines d'entre elles paraissant encore antinomiques...
32

Chang, Tsung-Dai, and 張琮岱. "Research on Novel Dynamic Temperature Measurement Technology." Thesis, 2018. http://ndltd.ncl.edu.tw/handle/94xf94.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
碩士
國立彰化師範大學
機電工程學系
106
This thesis proposes a novel dynamic temperature measurement technology and considers the influence of thermal radiation sensors on external radiation.It can improve the phenomenon of inaccurate measurement results of traditional infrared radiation thermometers at different room temperatures for the same target. In the past,it was necessary to wait for the balance between the ambient temperature and the measuring instrument's temperature to compensate at different temperatures via the sensor's built-in thermistor to measure the room temperature. This kind of processing is called static temperature compensation. However,in practice,measuring instruments often need to move at different ambient temperatures.This long wait for temperature balance has become a known drawback. In our thermal radiation temperature measurement system, in addition to the thermopile radiation sensor, an external thermistor was added as an ambient temperature detector.We derive two dynamic temperature compensation methods based on Steven Bozeman's law of radiant heat transfer and Newton's cooling law of convection heat transfer. 1.Internal and external thermistor temperature difference "Multiple sensor compensation method" 2.Built-in thermistor difference “Transient compensation method." We use a single-chip microcontroller to read the temperature sensor signal. After careful calibration and static temperature compensation, the dynamic temperature measurement data shows good agreement with the expected trend. According to the analysis of experimental results,the novel dynamic temperature measurement technique can achieve rapid temperature compensation. The average error of the target temperature is within 0.2 ℃, which is better than traditional radiation thermometers. This research is very suitable for the application of temperature measurement and temperature compensation occasions.It can effectively improve the measurement efficiency and save equipment expenses.
33

(7909019), Yizhou Nie. "Dynamic Deformation and Temperature Field Measurement of Metallic Materials." Thesis, 2019.

Знайти повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:

In this dissertation, we first used high-speed X-ray phase contrast imaging and infrared thermal imaging techniques to study the formation processes of adiabatic shear bands in aluminum 7075-T6 and 6061-T6 alloys. A modified compression Kolsky bar setup was developed to apply the dynamic loading. A flat hat-shaped specimen design was adopted for generating the shear bands at the designated locations. Experimental results show that 7075-T6 exhibits less ductility and a narrower shear band than 6061-T6. Maximum temperatures of 720 K and 770 K were locally determined within the shear band zones for 7075-T6 and 6061-T6 respectively. This local high temperature zone and the resulting thermal instability were found to relate to the shear band formation in these aluminum alloys. Secondly, a high-speed laser phosphorescence thermal imaging technique is developed and integrated with the compression Kolsky bar setup. The temperature field measurement during dynamic loading are performed at 100 – 200 kHz frame rate with a spatial resolution of 13 µm/pixel. The dynamic compression of copper shows 312 K temperature rise among the material surface. Experiments with thermocouple are also conducted and the results verifies the laser measurement. In the dynamic shear of aluminums, the temperature evolution during adiabatic shear band formation was observed and the results are compared with infrared measurements. The shear band was found forming at approximately 400 K and 440 K for 7075-T6 and 6061-T6, respectively, while the maximum temperature is measured as 650 K for 7075-T6 and 800 K for 6061-T6. Although the maximum temperature agrees with the infrared results, thermal softening is not considered as the main cause of the ASB formation due to the low temperature when the shear band forms.

34

Nelson, Sonya Renee. "Intrustive Probe Measurements in a High-Temperature Mach Two Flow." 2007. http://trace.tennessee.edu/utk_gradthes/179.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
To acquire heat transfer measurements of a high temperature Mach two flow a water-cooled calorimeter was placed in the flow and the water temperature rise was used to calculate the heat transfer rate and the recovery temperature of the gas. In addition, a graphite rod with a stainless steel tube at its core was used to measure the total pressure of the flow. This pressure probe was swept through the flow for two test runs to acquire a stagnation pressure profile of the gas flow. All results were compared to NASA CEA computer simulation code results. The heat transfer and recovery temperature results agreed well with the computer simulation code, while the total pressure results from the probe data agree excellently with the computer simulation code. A sensitivity analysis on the results was also preformed on the results.
35

Huang, Yen-Ming, and 黃彥銘. "The Experimental Design for the Qmax Measurement by Dynamic Temperature-Tracing Method." Thesis, 2006. http://ndltd.ncl.edu.tw/handle/14768133133273533836.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
碩士
國立清華大學
工程與系統科學系
94
The purpose of the thesis is to test the heat pipe maximum heat transfer rate (Qmax) of the electronics cooling system. Two test methods were compared with each other which were Traditional Standard Test Method and Dynamic-Temperature-Tracing Method (D.T.T.). A sensitivity study was also achieved by this thesis. In order to maintain axial temperature difference less than 10C and radial temperature difference less than 20C, a non-uniform power load was introduced into the evaporator. The non-uniform power load can let the heat homogeneously flow into the evaporator. The error of Qmax between Traditional Standard Test Method and Simulation result is under 10% , and the error of Qmax between D.T.T Method and Simulation is under 15%. The results of D.T.T. show that in the same test period, when the condenser length is decreasing, then reduce the cooling water temperature would increase the accuracy. The lower temperature of the cooling water was implied a lower adiabatic temperature, then the Qmax was decreasing too and result in the decreasing of the test period. In addition, the test time of D.T.T. method can only increase 5% error equally by 5 minutes reductions to 2 minutes. Therefore, under the maintenance experiment result accuracy, the test time could reduce to 2 minutes.
36

Manzanera, Esteve Isaac Vicente 1977. "Development of variable temperature NMR force microscopy : proton spin relaxation measurements in ammonium sulfate." Thesis, 2012. http://hdl.handle.net/2152/ETD-UT-2012-08-6046.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Nuclear magnetic resonance force microscopy (NMRFM) of a micron size sample of ammonium sulfate was performed by measuring the cantilever deflection produced by coupling the magnetic force to a mechanical cantilever at its resonance frequency. Spin-lattice and spin-spin relaxation measurements were obtained with our newly developed NMRFM probe. A system with more advanced positioning, acquisition and analysis has been fabricated. A new device in which a semi-automatic system performs nanoposition control, spin manipulation, dynamical measurements, and data analysis has been demonstrated to be successful. The new system has proven to be an improvement with respect to other versions of NMRFM probes, thanks to its versatility for pulse sequence designs, faster data acquisition, and automatic analysis of the information. This thesis presents an explanation of the theoretical details of nuclear magnetic resonance force microscopy, and experiments are described in which dynamical measurements of proton spin interactions are obtained. Finally, relaxation time e ffects of the observed force signal are considered in detail. A novel spin manipulation technique which is being implemented for future measurements is described in detail, and magnet con figurations for larger magnetic field gradients and consequently larger signal-to-noise ratio, are also described.
text
37

Wang, Guanghua. "Two-point high repetition rate measurement of temperature and thermal dissipation in a turbulent non-premixed jet flame." Thesis, 2004. http://www.lib.umi.com/cr/utexas/fullcit?p3151437.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
38

Kumar, Vijay. "Installation and Operation of Air-Sea Flux Measuring System on Board Indian Research Ships." Thesis, 2017. http://etd.iisc.ernet.in/2005/3778.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Exchange of mass (water vapor), momentum, and energy between atmosphere andocean has profound influence on weather and climate. This exchange takes place at the air-sea interface, which is part of the marine atmospheric boundary layer. Various empirical relations are being used for estimating these fluxes in numericalweather and climate models but their accuracies are not sufficiently verified or tested over the Indian Ocean. The main difficulty is that vast areas of open oceans are not easily accessible. The marine environment is very corrosive and unattended long term and accurate measurements are extremely expensive. India has research ships that spend most of their time over the seas around India but that opportunity is yet to be exploited. To address this, an air-sea flux measurement system for operation on board research ships was planned. The system was tested on board Indian Research Vessels ORV SagarKanya during its cruise SK-296 in the Bay of Bengal (BoB) in July-August 2012, and NIO ship Sindhu Sadhana in June-July 2016. The complete set included instruments for measuring wind velocity, windspeed and direction, air and water temperature, humidity, pressure, all components of radiation and rainfall. In addition, ship motion was recorded at required sampling rate to correct for wind velocity. The set up facilitates the direct computation of sensible and latent heat fluxes using the eddy covariance method. In this thesis, design and installation of meteorological and ship motion sensors onboard research ships, data collection and quality control, computation of fluxes of heat, moisture and momentum using eddy covariance method and their comparison with those derived from bulk method are described. A set of sensors (hereafter, flux measuring system) were mounted on a retractable boom, ~7 m long forward of the bow to minimize the flow disturbance caused by the ship superstructures. The wind observed in the ship frame was corrected for ship motion contaminations. During the CTCZ cruise period true mean wind speed was over 10 m/s and true wind direction was South/South-Westerly. True windspeedis computed combiningdata from the anemometer a compass connected to AWS and a GPS. Turbulent fluxes were computed from motion-corrected time-series of high frequency velocity, water vapor, and air temperature data. Covariance latent heat flux, sensible heat flux, and wind stress were obtained by cross-correlating the motion-corrected vertical velocity with fast humidity fluctuations measured with anIR hygrometer, temperate fluctuation from sonic anemometer and motion-corrected horizontal windfluctuations from sonic anemometer, respectively. During the first attempt made in July-August 2012 as part of a cruise of CTCZ monsoonresearch program, observations were mainly taken in the North Bay of Bengal. The mean air-temperature and surface pressure were ~28 Deg C and ~998 hPa, respectively. Relative humidity was ~80%. Average wind speed varied in the range 4-12 m/s. The mean latent heat flux was 145 W/m2 , sensible heat flux was ~3 W/m2 and average sea-air temperature difference was ~ 0.7°C. The Bay of Bengal boundary layer experiment (BoBBLE) was conducted during June-July 2016 and the NIO research ship Sindhu Sadhana was deployed. The same suite of sensors installed during CTCZ were used during BoBBLE. During daytime, peaks of hourly net heat fluxes (Qnet ) were around 600 Wm-2(positive if into the sea), whereas, night time values were around -250 W m-2. Sea surface temperature was always >28°C and maximum air temperature exceeded 29°C. During the experimental period the mean Qnet was around -24 Wm-2 from both eddy covariance and conventional bulk methods, but there are significant differences on individual days.The new flux system gives fluxes which are superior to what was available before.
39

Τζεμπελίκος, Δημήτριος. "Υπολογιστική και πειραματική διερεύνηση φαινομένων μεταφοράς μάζας και θερμότητας σε πρότυπη εργαστηριακή εγκατάσταση μηχανικής ξήρανσης". Thesis, 2015. http://hdl.handle.net/10889/8598.

Повний текст джерела
Стилі APA, Harvard, Vancouver, ISO та ін.
Анотація:
Αντικείμενο της διατριβής είναι η υπολογιστική και πειραματική διερεύνηση των φαι-νομένων μεταφοράς θερμότητας και μάζας σε πρότυπη εργαστηριακή μονάδα μηχανικής ξήρανσης δια συναγωγής, η οποία σχεδιάσθηκε, κατασκευάσθηκε και εξοπλίσθηκε με μετρητικό εξοπλισμό και ολοκληρωμένο σύστημα ελέγχου, συλλογής και επεξεργασίας των πειραματικών μετρήσεων. Στην εργαστηριακή μονάδα ξήρανσης παρέχεται η δυνατότητα μεταβολής και ελέγχου των βασικών παραμέτρων από τις οποίες επηρεάζεται η θερμική διεργασία της ξήρανσης, όπως η ταχύτητα, η θερμοκρασία και η υγρασία του αέρα ξήρανσης. Η μέτρηση της αποβολής της περιεχομένης υγρασίας στο υπό ξήρανση προϊόν πραγματοποιείται μέσω δυναμοκυψελών υψηλής ακρίβειας, ενώ η χωρική κατανομή της ταχύτητας ροής στην είσοδο του θαλάμου ξήρανσης κατά τη διεξαγωγή κάθε κύκλου πειραμάτων συνεχώς μετρείται με συστοιχία σωλήνων pitot και ενός συστήματος συγκροτούμενου από ηλεκτροβαλβίδες και μορφομετατροπέα πίεσης. Η χωρική κατανομή της θερμοκρασίας και της ταχύτητας στον θάλαμο ξήρανσης είναι δυνατή μέσω αισθητηρίων που προσαρμόζονται σε καρτεσιανό σύστημα μετακίνησης ελεγχόμενου από υπολογιστή το οποίο σχεδιάσθηκε, κατασκευάσθηκε και τοποθετήθηκε στην έξοδο του κατακόρυφου θαλάμου ξήρανσης αποτελώντας πλέον αναπόσπαστο τμήμα της εργαστηριακής μονάδας. Όλες οι μετρήσεις πραγματοποιήθηκαν στον κατακόρυφο θάλαμο ξήρανσης, ενώ παρέχεται η δυνατότητα διεξαγωγής μετρήσεων και στο θάλαμο ξήρανσης οριζόντιας διάταξης. Στα πλαίσια της διατριβής, έγινε συστηματική πειραματική διερεύνηση της ξήρανσης δια συναγωγής σε φέτες κυδωνιών και μελετήθηκε η επίδραση διαφόρων παραμέτρων που επηρεάζουν τη θερμική διεργασία της ξήρανσης σε αυτό το αγροτικό προϊόν, για θερμοκρασίες αέρα 40, 50 και 60οC και ταχύτητες αέρα 1, 2 και 3 m/s. Σκοπός των με-τρήσεων ήταν ο προσδιορισμός: (i) της επίδρασης της θερμοκρασίας και της ταχύτητας του αέρα στις καμπύλες ξήρανσης κυλινδρικών φετών κυδωνιού, (ii) της επίδρασης του πάχους των κυλινδρικών φετών του κυδωνιού στις καμπύλες ξήρανσης, (iii) της επίδρασης του προσανατολισμού των κυλινδρικών φετών κυδωνιού, ως προς τη διεύθυνση της προσπίπτουσας ροής, στις καμπύλες ξήρανσης, (iv) της προσαρμογής των καμπύλων ξήρανσης σε διάφορα απλά μοντέλα ξήρανσης λεπτού στρώματος, v) των ενεργών συντελεστών διάχυσης υγρασίας για την κάθε περίπτωση με την μέθοδο της κλίσης (slope method) και οι οποίοι συσχετίστηκαν με τη θερμοκρασία του αέρα ξήρανσης έτσι ώστε ο συντελεστής διάχυσης της υγρασίας να εκφρασθεί με την εξίσωση μορφής τύπου Arrhenius και vi) των διεπιφανειακών συντελεστών μεταφοράς θερμότητας και μάζας οι οποίοι στη εκφράζονται ως συνάρτηση των αδιάστατων αριθμών Nu, Re και Pr με τη μορφή Nu=aRebPr1/3. Η προσομοίωση του ρευστοθερμικού πεδίου στο θάλαμο ξήρανσης και ο υπολογισμός των διεπιφανειακών συντελεστών μεταφοράς θερμότητας και μάζας γύρω από την επι-φάνειας του προϊόντος πραγματοποιήθηκε με χρήση της εργαλείων της υπολογιστικής ρευστοδυναμικής (CFD). Έγιναν προσομοιώσεις CFD μόνιμης κατάστασης (steady-state), θεωρώντας τυρβώδη ροή ενώ ο θάλαμος ξήρανσης και η κυλινδρική φέτα του κυδωνιού εξιδανικεύθηκε ως μια δισδιάστατη αξονοσυμμετρική διαμόρφωση. Ως μοντέλο τύρβης χρησιμοποιήθηκε το μοντέλο SST (Shear Stress Transport) k-ω, ενώ για την προσέγγιση του οριακού στρώματος στα τοιχώματα του προϊόντος επιλέχθηκε το μοντέλο LRNM (Low Reynolds Number Model). Από την επίλυση των πεδίων ροής και θερμοκρασίας προσδιορίσθηκαν οι κατανομές των διεπιφανειακών συντελεστών στην προσήνεμη και στην υπήνεμη πλευρά της κυλινδρικής φέτας του κυδωνιού για όλες τις πειραματικές συνθήκες. Από τον υπολογισμό του μέσων σταθμισμένων τιμών του διεπιφανειακού συντελεστή μεταφοράς θερμότητας συνάγεται μια συσχέτιση των αδιάστατων αριθμών Nu, Re και Pr, στη μορφή Nu=aRebPr1/3, που ως εύρημα εμπλουτίζει την υφιστάμενη βιβλιογραφία. Στο τελικό στάδιο της διατριβής, αναπτύχθηκε και αποτιμήθηκε σε σύγκριση με τις πειραματικές μετρήσεις ένα μονοδιάστατο αριθμητικό μοντέλο μη-μόνιμης μεταφοράς θερμότητας και μάζας για την προσομοίωση των καμπυλών ξήρανσης σε κυλινδρικές φέτες κυδωνιών. Στο μοντέλο, η μεταφορά θερμότητας εντός του προϊόντος γίνεται με αγωγή ενώ η μεταφορά μάζας γίνεται με υγρή διάχυση, με την εξάτμιση του περιεχόμενου νερού στις φέτες του κυδωνιών να λαμβάνει χώρα από την προσήνεμη και την υπήνεμη επιφάνεια. Στο αριθμητικό μοντέλο, λαμβάνεται υπόψη η συρρίκνωση της κυλινδρικής φέτας του κυδωνιού, θεωρώντας ότι ο όγκος της προϊόντος μειώνεται κάθε φορά κατά τον όγκο του νερού που εξατμίζεται τις δύο επιφάνειες της φέτας. Στον αριθμητικό κώδικα, οι θερμοφυσικές ιδιότητες του κυδωνιού και του αέρα προσδιορίζονται από σχέσεις που συναντώνται στη βιβλιογραφία, ο ενεργός συντελεστής διάχυσης της υγρασίας εισάγεται ως αποτέλεσμα της επεξεργασίας των πειραματικών μετρήσεων, ενώ για τους συντελεστές μεταφοράς χρησιμοποιήθηκαν οι μέσες σταθμισμένες τιμές των διεπιφανειακών συντελεστών μεταφοράς θερμότητας και μάζας, ως αποτέλεσμα των CFD προσομοιώσεων και για περίπτωση μη-συζυγούς προσέγγισης (non-conjugated approach). Στοχεύοντας στην καλύτερη προσαρμογή των πειραματικών μετρήσεων και των υπολογιστικών αποτελεσμάτων, χρησιμοποιήθηκε η ανάλυση μη-γραμμικής παλινδρόμησης, με τους αλγόριθμους SQP (Sequential Quadratic Programming) και εσωτερικού σημείου (internal point), για τον προσδιορισμό των συντελεστών της εξίσωσης διάχυσης της υγρασίας, με μικρή όμως βελτίωση των υπολογιστικών αποτελεσμάτων, σε συνδυασμό με τη σημαντική αύξηση του χρόνου υπολογισμού. Συμπερασματικά, από τη συνολική αξιολόγηση των αποτελεσμάτων του αριθμητικού κώδικα αποδείχθηκε ότι το προτεινόμενο αριθμητικό μοντέλο που βασίζεται στη διάχυση είναι ικανό να περιγράψει αποτελεσματικά τη σύζευξη της μεταφοράς της θερμότητας και της μάζας όπως και να αποτυπώσει ικανοποιητικά τη χρονική εξέλιξη της περιεχόμενης υγρασίας και θερμοκρασίας εντός του προϊόντος, με την ελάχιστη χρήση πειραματικών μεταβλητών εισόδου ενώ έχει ελάχιστες υπολογιστικές απαιτήσεις. Για αυτούς τους λόγους μπορεί να θεωρηθεί κατάλληλο για την ανάλυση της διαδικασίας της ξήρανσης δια συναγωγής σε οποιοδήποτε οργανικό ή μη-οργανικό προϊόν.
The objective subject of this thesis is the computational and experimental investigation of heat and mass transfer phenomena in a new laboratory mechanical convection drying unit, which was designed, constructed and equipped with measuring equipment and an integrated control system of collection and processing of experimental measurements. In laboratory drying unit there is an option to change and control the main parameters of which affected the thermal drying process, such as speed, temperature and humidity of the drying air. Measurement of the removal of moisture content in the dried product is carried out through high-precision load cells, and the spatial distribution of the flow velocity at the entrance of the drying chamber during of each experiment, is continuously measured by pitot tube array and a system composed of solenoids and a pressure transducer. The spatial distribution of temperature and velocity in the drying chamber is possible by means of sensors fitted to a computer controlled cartesian motion system which is designed, constructed and placed at the outlet of the vertical drying chamber, constituting an integral part of the facility. All measurements were performed on the vertical drying chamber while it is possible to conduct measurements in a horizontal layout of the drying chamber. In this thesis became systematic experimental investigation of convective drying sliced quince and studied the effect of various parameters affecting the thermal drying process in this agricultural product, for air temperatures of 40, 50 and 60°C and air velocities 1, 2 and 3 m/s. The purpose of the measurements was to determine: (i) the effect of temperature and air velocity in drying curves of cylindrical quince slice, (ii) the effect of the thickness of the cylindrical slice of quince in drying curves, (iii) the effect of the orientation of the cylindrical quince slice, in the direction of incident flow, in the drying curves (iv) the adjusting of the drying curves in several simple thin layer drying models v) the effective moisture diffusivity coefficients for each case with the slope method which correlated with the temperature of the drying air so that the diffusion coefficient of moisture be expressed by Arrhenius type equation form and vi ) the interfacial heat and mass transfer coefficients which expressed as a function of dimensionless numbers Nu, Re and Pr in the form Nu = aRebPr1/3. The simulation of the flow and temperature fields in the drying chamber and the calcu-lation of the interfacial heat and mass transfer coefficients around the surface of the product were performed using the tools of Computational Fluid Dynamics (CFD). CFD simulations were steady state, considering turbulent flow while drying chamber and cy-lindrical slice of quince specialized as an axisymmetric two-dimensional configuration. As turbulence model was used the SST k-ω model while on the approximation of the boundary layer near the walls of the product the LRNM was chosen. By solving the flow and temperature fields determined distributions of interfacial heat and mass transfer coefficients in front and rear of the cylindrical slice of quince for all experimental conditions. The calculation of the weighted average prices of the interfacial heat transfer coefficient indicates a correlation between dimensionless numbers Nu, Re and Pr, in the form Nu = aRebPr1/3, which as finding enriches the existing literature. In the final stage of the thesis, developed and evaluated in comparison with the experi-mental measurements, a one-dimensional transient numerical model of heat and mass transfer to simulate drying curves in cylindrical slices of quince. The heat transfer inside the quince is considered to be by conduction while the moisture transfer is considered to be governed solely by liquid diffusion. Evaporation is considered to take place only from the windward and leeward surface of the quince slice. The numerical model takes into account the shrinkage of the cylindrical slice of quince, assuming that the cylindrical volume decreases each time as much as the volume of water that evaporates on both surfaces of the slice. The numerical code used the thermophysical properties of quince and air from the literature, the effective diffusion coefficient of moisture experimentally determined by the method of the slopes, while the transfer coefficients used the weighted average prices of interfacial heat and mass transfer coefficients derived from the simulations with CFD (non-conjugated approach). In order to achieve higher accuracy between experimental data and predictions, a non-linear regression analysis, using an Arrhenius type effective diffusion equation, was also performed. However, preliminary result, obtained using the SQP (Sequential Quadratic Programming) and Interior Point algorithms for the minimization of the Chi-square function (χ2) showed only small improvement of the calculated results with a significant increase of the computational cost. In conclusion, the overall assessment of the results of the numeric code shown that the proposed numerical model based on diffusion is able to effectively describe the coupling of heat transfer and mass, as to capture the time evolution of moisture content and temperature within the product, with minimum use of experimental input variables and minimum computational requirements. For these reasons it may be considered appropriate to analyze the convective drying process in any organic or non-organic product.

До бібліографії