Academic literature on the topic 'Modeling the formation density'

Create a spot-on reference in APA, MLA, Chicago, Harvard, and other styles

Select a source type:

Consult the lists of relevant articles, books, theses, conference reports, and other scholarly sources on the topic 'Modeling the formation density.'

Next to every source in the list of references, there is an 'Add to bibliography' button. Press on it, and we will generate automatically the bibliographic reference to the chosen work in the citation style you need: APA, MLA, Harvard, Chicago, Vancouver, etc.

You can also download the full text of the academic publication as pdf and read online its abstract whenever available in the metadata.

Journal articles on the topic "Modeling the formation density"

1

Hulle, Marc M. Van. "Kernel-Based Topographic Map Formation by Local Density Modeling." Neural Computation 14, no. 7 (2002): 1561–73. http://dx.doi.org/10.1162/08997660260028610.

Full text
Abstract:
We introduce a new learning algorithm for kernel-based topographic map formation. The algorithm generates a gaussian mixture density model by individually adapting the gaussian kernels' centers and radii to the assumed gaussian local input densities.
APA, Harvard, Vancouver, ISO, and other styles
2

Im, Yeon Ho, Max O. Bloomfield, Suchira Sen, and Timothy S. Cale. "Modeling Pattern Density Dependent Bump Formation in Copper Electrochemical Deposition." Electrochemical and Solid-State Letters 6, no. 3 (2003): C42. http://dx.doi.org/10.1149/1.1541256.

Full text
APA, Harvard, Vancouver, ISO, and other styles
3

Korovin, Mikhail O., and Anna O. Aleeva. "“Core–core” petrophysical relationships generation for reservoir modeling." Bulletin of the Tomsk Polytechnic University Geo Assets Engineering 335, no. 4 (2024): 73–79. http://dx.doi.org/10.18799/24131830/2024/4/4539.

Full text
Abstract:
Relevance. The need in a detailed analysis of distribution of physical properties of the formation in space. Currently, the parameters connecting the results of responses of geophysical fields and petrophysical studies of core are averaged. On the one hand, this is due to the small number of wells with cores in the fields, and on the other hand, to simplify and speed up calculations in the presence of a large number of wells with geophysical surveys of wells. However, this approach does not allow us to identify the largest number of a particular layer or section characteristics. This, in its t
APA, Harvard, Vancouver, ISO, and other styles
4

Luycx, Mathilde, and Carlos Torres-Verdín. "Rapid forward modeling of logging-while-drilling neutron-gamma density measurements." GEOPHYSICS 83, no. 6 (2018): D231—D246. http://dx.doi.org/10.1190/geo2018-0142.1.

Full text
Abstract:
Neutron-activated gamma-ray (neutron-gamma) logging-while-drilling (LWD) measurements deliver bulk density estimates without using a chemical source. The assessment of bulk density is based on neutron-induced non-capture gamma rays, corrected for neutron transport by combining particle counts acquired at two gamma-ray detectors and two fast neutron detectors. Particle counts from all four detectors are necessary to deliver one density measurement whose accuracy compares well to that of the gamma-gamma density instruments. Thereafter, borehole environmental effects are mitigated with empirical
APA, Harvard, Vancouver, ISO, and other styles
5

Finke, Justin D., Marco Ajello, Alberto Domínguez, et al. "Modeling the Extragalactic Background Light and the Cosmic Star Formation History." Astrophysical Journal 941, no. 1 (2022): 33. http://dx.doi.org/10.3847/1538-4357/ac9843.

Full text
Abstract:
Abstract We present an updated model for the extragalactic background light (EBL) from stars and dust, over wavelengths ≈0.1–1000 μm. This model uses accurate theoretical stellar spectra, and tracks the evolution of star formation, stellar mass density, metallicity, and interstellar dust extinction and emission in the universe with redshift. Dust emission components are treated self-consistently, with stellar light absorbed by dust reradiated in the infrared as three blackbody components. We fit our model, with free parameters associated with star formation rate and dust extinction and emissio
APA, Harvard, Vancouver, ISO, and other styles
6

Ryzhova, D. A., A. I. Tolstova, E. P. Dubinin, M. V. Kosnyreva, A. A. A.A. Bulychev, and A. L. Groholsky. "TECTONOSPHERE AND FORMATION OF THE MOZAMBIQUE RIDGE: DENSITY AND PHYSICAL MODELING." BULLETIN OF KAMCHATKA REGIONAL ASSOCIATION «EDUCATIONAL-SCIENTIFIC CENTER». EARTH SCIENCES 1, no. 53 (2022): 46–58. http://dx.doi.org/10.31431/1816-5524-2022-1-53-46-58.

Full text
Abstract:
The tectonosphere and formation conditions of the Mozambique Ridge are considered. The Mozambique Ridge is located in the southwestern part of the Indian Ocean between the Natal and the Mozambique Mesozoic Basins. The way how the ridge formed remains debatable. The anomalous structure of the crust of the Mozambique Ridge can be explained either by underplaying - thickening of the oceanic crust from below due to magmatism, or by stretching and thinning of the continental crust. Based on gravitational and magnetic field anomalies, seismotomography and other geological and geophysical information
APA, Harvard, Vancouver, ISO, and other styles
7

Damayanti, Cahya, Sismanto Sismanto, Ari Setiawan, and Lina Handayani. "Application Power Spectrum Analysis of Gravity Data to Investigate Subsurface Structures of the North Banggai-Sula Microcontinent in Maluku Sea Area." Iraqi Geological Journal 57, no. 1E (2024): 252–65. http://dx.doi.org/10.46717/igj.57.1e.16ms-2024-5-27.

Full text
Abstract:
Different tectonic characteristics are exhibited among Maluku Sea and Banggai-Sula Microcontinent which are located side by side to each other. However, the northern part of the Banggai-Sula Microcontinent, positioned along the Maluku Sea margin, has a complex geological structure to be observed. Therefore, this study aimed to analyze the subsurface structure and sediment thickness due to extensional mechanisms in the area, using the gravity method. The investigation was executed through power spectrum analysis and three-dimensional (3D) modeling of complete Bouguer anomaly data. Eleven x-dire
APA, Harvard, Vancouver, ISO, and other styles
8

Gerasimenko, Alexander Yu, Artem V. Kuksin, Yury P. Shaman, et al. "Hybrid Carbon Nanotubes–Graphene Nanostructures: Modeling, Formation, Characterization." Nanomaterials 12, no. 16 (2022): 2812. http://dx.doi.org/10.3390/nano12162812.

Full text
Abstract:
A technology for the formation and bonding with a substrate of hybrid carbon nanostructures from single-walled carbon nanotubes (SWCNT) and reduced graphene oxide (rGO) by laser radiation is proposed. Molecular dynamics modeling by the real-time time-dependent density functional tight-binding (TD-DFTB) method made it possible to reveal the mechanism of field emission centers formation in carbon nanostructures layers. Laser radiation stimulates the formation of graphene-nanotube covalent contacts and also induces a dipole moment of hybrid nanostructures, which ensures their orientation along th
APA, Harvard, Vancouver, ISO, and other styles
9

QIN, L., K. HAGEL, R. WADA, et al. "LOW DENSITY NUCLEAR MATTER IN FERMI ENERGY COLLISIONS." International Journal of Modern Physics E 19, no. 08n09 (2010): 1513–22. http://dx.doi.org/10.1142/s0218301310015916.

Full text
Abstract:
Recent heavy ion reaction studies aimed at elucidating the properties of low density matter produced in near Fermi-energies are discussed. At the lowest densities and temperatures large alpha mass fractions are observed. The symmetry free energies derived from isoscaling analyses are far above those obtained in common effective interaction calculations, reflecting cluster formation, primarily of alpha particles, not included in such calculations. Theoretical modeling of these results requires the consideration of cluster formation and medium modifications of cluster properties.
APA, Harvard, Vancouver, ISO, and other styles
10

Zhang, Yichen, Jonathan Tan, Chris McKee, and James De Buizer. "Massive Star Formation: Radiation Transfer Modeling and Multiwavelength Observation." Proceedings of the International Astronomical Union 8, S292 (2012): 67. http://dx.doi.org/10.1017/s1743921313000471.

Full text
Abstract:
AbstractWe present a radiation transfer model consistently developed for a core in high pressure environment forming a massive star through core accretion. We compare this model to the massive protostar G35.2-0.74N, including SOFIA observations at 30 and 40μm. Good agreement is achieved, showing that a ~30M⊙ protostar is forming from a high surface density core via relatively ordered collapse and accretion, driving powerful outflows. This result supports the Core Accretion theory which predicts that massive stars form similarly to low-mass stars.
APA, Harvard, Vancouver, ISO, and other styles
More sources

Dissertations / Theses on the topic "Modeling the formation density"

1

Paramonov, Pavel B. "Theoretical Modeling of the Nanostructure Formation in Soft Condensed Matter Using Atomic Force Microscopy." University of Akron / OhioLINK, 2005. http://rave.ohiolink.edu/etdc/view?acc_num=akron1123016038.

Full text
APA, Harvard, Vancouver, ISO, and other styles
2

Wallin, Erik. "Alumina Thin Film Growth: Experiments and Modeling." Licentiate thesis, Linköping University, Linköping University, Plasma and Coating Physics, 2007. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-8461.

Full text
Abstract:
<p>The work presented in this thesis deals with experimental and theoretical studies related to the growth of crystalline alumina thin films. Alumina, Al<sub>2</sub>O<sub>3</sub>, is a polymorphic material utilized in a variety of applications, e.g., in the form of thin films. Many of the possibilities of alumina, and the problems associated with thin film synthesis of the material, are due to the existence of a range of different crystalline phases. Controlling the formation of the desired phase and the transformations between the polymorphs is often difficult.</p><p>In the experimental part
APA, Harvard, Vancouver, ISO, and other styles
3

Скачков, В. А., В. И. Иванов, Т. Н. Нестеренко та Ю. В. Мосейко. "Моделирование формирования плотности углеродных композиционных материалов при уплотнении методом термоградиента". Thesis, Сумський державний університет, 2016. http://essuir.sumdu.edu.ua/handle/123456789/53985.

Full text
Abstract:
Свойства углеродных композиционных материалов определяются структурой материала, которая характеризуется расположением армирующих волокон, их объемным содержанием и пористостью. Повышение плотности данных материалов достигается заполнением их пористой структуры пиролитическим углеродом с применением методов газофазного уплотнения. К числу газофазных методов относятся изотермическое и термоградиентное уплотнение.
APA, Harvard, Vancouver, ISO, and other styles
4

Darghouth, Ala Aldin M. Hani Mahmood. "Modélisation photochimique de la formation des électrons de conduction au sein de l'hétérojonction d'une cellule solaire organique." Thesis, Université Grenoble Alpes (ComUE), 2017. http://www.theses.fr/2017GREAV091/document.

Full text
Abstract:
L'incertitude entourant la production du pétrole et la pollution associée aux fossiles combustibles ainsi que la série d'accidents bien connus de Three Mile Island, Tchernobyl et Fukushima, en plus que le désir de diversifier les sources d'énergie sont des facteurs importants qui favorisent le développement de la technologie des cellules photovoltaïques. Certaines applications de photovoltaïques organiques sont particulièrement intéressantes à cause de la possibilité d'impréssion des circuits et la création de cellules photovoltaïques flexibles sous la forme d'un ruban adhésif. À la suite des
APA, Harvard, Vancouver, ISO, and other styles
5

Afaneh, Akef. "Computational investigations of the electronic structure of molecular mercury compounds: ion-selective sensors." Springer International Publishing AG, 2012. http://hdl.handle.net/1993/30661.

Full text
Abstract:
This thesis presents the basic concepts of electronic structure theory and the chemical properties of mercury. The theoretical foundation of DFT and the consequences of relativity are also introduced. The electronic structure of Hg(II) ions, [Hg(L)n(H2O)m]q (L = HO-, Cl-, HS-, S2-) has been studied. We show, in this thesis, that the charge transfer (that is calculated from the hard-soft-acid-base principle (Pearson’s principle)), the total NBO charge and the interaction energies are strongly correlated. Our studies indicate the effect of the solvent on the global electrophilicity, the charge t
APA, Harvard, Vancouver, ISO, and other styles
6

Kriek, Andre. "RoboCup formation modeling." Thesis, Stellenbosch : University of Stellenbosch, 2009. http://hdl.handle.net/10019.1/2810.

Full text
Abstract:
Thesis (MSc (Mathematical Sciences. Computer Science))--University of Stellenbosch, 2009.<br>Since the late 1990s, the Robot Soccer World Cup has been used as a testing ground for new technology in the eld of robotic design and arti cial intelligence. This research initiative pits two teams of robots against each other in a game of soccer. It is hoped that the technology gained will enable the construction of a fully autonomous team of robot players to play a normal soccer game against a human team by the year 2050. In robot soccer matches, as in real soccer matches, inferring an opponen
APA, Harvard, Vancouver, ISO, and other styles
7

Seybold, Hansjörg Florian. "Modeling river delta formation /." [S.l.] : [s.n.], 2009. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=18263.

Full text
APA, Harvard, Vancouver, ISO, and other styles
8

Ghosh, Tathagata. "MODELING OF AN AIR-BASED DENSITY SEPARATOR." UKnowledge, 2013. http://uknowledge.uky.edu/mng_etds/7.

Full text
Abstract:
There is a lack of fundamental studies by means of state of the art numerical and scale modeling techniques scrutinizing the theoretical and technical aspect of air table separators as well as means to comprehend and improve the efficiency of the process. The dissertation details the development of a workable empirical model, a numerical model and a scale model to demonstrate the use of a laboratory air table unit. The modern air-based density separator achieves effective density-based separation for particle sizes greater than 6 mm. Parametric studies with the laboratory scale unit using low
APA, Harvard, Vancouver, ISO, and other styles
9

Eriksson, Olle. "Modeling Information Transfer in High-Density Crowds." Thesis, Uppsala universitet, Tillämpad matematik och statistik, 2018. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-355371.

Full text
APA, Harvard, Vancouver, ISO, and other styles
10

Bates, Wilfred Mark. "Pattern formation in models of charge density waves." Thesis, McGill University, 2000. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=31189.

Full text
Abstract:
We investigate the phenomenon of phase organization in charge density waves. Coppersmith and Littlewood [87] have argued that charge density waves become organized into a "minimally stable" state when subject to a pulsed driving force. They have also proposed that the pulse duration memory effect, observed by Fleming and Schneemeyer [86], is evidence for this self organizing behaviour.<br>We review the microscopic origins of charge density waves, experimental results, and theoretical models of charge density waves. We also review theories of complex systems, and, in particular, the phase organ
APA, Harvard, Vancouver, ISO, and other styles
More sources

Books on the topic "Modeling the formation density"

1

Holzbecher, Ekkehard O. Modeling Density-Driven Flow in Porous Media. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-642-58767-2.

Full text
APA, Harvard, Vancouver, ISO, and other styles
2

Deutsch, Andreas, and Sabine Dormann. Cellular Automaton Modeling of Biological Pattern Formation. Birkhäuser Boston, 2017. http://dx.doi.org/10.1007/978-1-4899-7980-3.

Full text
APA, Harvard, Vancouver, ISO, and other styles
3

Holzbecher, Ekkehard O. Modeling density-driven flow in porous media: Principles, numerics, software. Springer, 1998.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
4

Zeilhofer, Claudia. Multi-dimensional B-spline modeling of spatio-temporal ionospheric signals. Deutsche Geodätische Kommission bei der Bayerischen Akademie der Wissenschaften, 2008.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
5

Kaashoek, J. F. Modeling one dimensional pattern formation by anti-diffusion. Centrum voor Wiskunde en Informatica =, 1990.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
6

Korshin, Gregory V. Modeling DBP formation kinetics: Mechanistic and spectroscopic approaches. AWWA Research Foundation, 2004.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
7

Memarzadeh, Y. Ionospheric modeling for precise GNSS applications. Nederlandse Commissie voor Geodesie = Netherlands Geodetic Commission, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
8

Memarzadeh, Y. Ionospheric modeling for precise GNSS applications. NCG, Nederlandse Commissie voor Geodesie, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
9

Yin, Hezhu. Application of resistivity-tool-response modeling for formation evaluation. American Association of Petroleum Geologists, 2011.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
10

Kulkarni, Mihir Sanjay. Modeling the formation, evolution, and observation of first stars. [publisher not identified], 2021.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
More sources

Book chapters on the topic "Modeling the formation density"

1

Futawatari, Tohru, and Tetsuya Kusuda. "Fluid-mud movement and bed formation process with density current in estuaries." In Estuarine Water Quality Management Monitoring, Modelling and Research. American Geophysical Union, 1990. http://dx.doi.org/10.1029/ce036p0245.

Full text
APA, Harvard, Vancouver, ISO, and other styles
2

Chassaing, P., R. A. Antonia, F. Anselmet, L. Joly, and S. Sarkar. "First-Order Modeling." In Variable Density Fluid Turbulence. Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-017-0075-7_10.

Full text
APA, Harvard, Vancouver, ISO, and other styles
3

Chassaing, P., R. A. Antonia, F. Anselmet, L. Joly, and S. Sarkar. "Second-Order Modeling." In Variable Density Fluid Turbulence. Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-017-0075-7_11.

Full text
APA, Harvard, Vancouver, ISO, and other styles
4

Artavia, Luis D., and Christopher W. Macosko. "Polyurethane flexible foam formation." In Low density cellular plastics. Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-1256-7_2.

Full text
APA, Harvard, Vancouver, ISO, and other styles
5

Burkhart, Harold E., and Margarida Tomé. "Quantifying Stand Density." In Modeling Forest Trees and Stands. Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-90-481-3170-9_8.

Full text
APA, Harvard, Vancouver, ISO, and other styles
6

Giannozzi, Paolo, and Stefano Baroni. "Density-Functional Perturbation Theory." In Handbook of Materials Modeling. Springer Netherlands, 2005. http://dx.doi.org/10.1007/1-4020-3286-2_11.

Full text
APA, Harvard, Vancouver, ISO, and other styles
7

Giannozzi, Paolo, and Stefano Baroni. "Density-Functional Perturbation Theory." In Handbook of Materials Modeling. Springer Netherlands, 2005. http://dx.doi.org/10.1007/978-1-4020-3286-8_11.

Full text
APA, Harvard, Vancouver, ISO, and other styles
8

Salojärvi, Jarkko, Kai Puolamäki, and Samuel Kaski. "On Discriminative Joint Density Modeling." In Machine Learning: ECML 2005. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/11564096_34.

Full text
APA, Harvard, Vancouver, ISO, and other styles
9

Da Costa Lewis, Nigel. "Nonparametric Density Estimation for Energy Price Returns." In Energy Risk Modeling. Palgrave Macmillan UK, 2005. http://dx.doi.org/10.1057/9780230523784_6.

Full text
APA, Harvard, Vancouver, ISO, and other styles
10

Greenspan, Donald. "Liquid Drop Formation, Fall, and Collision." In Particle Modeling. Birkhäuser Boston, 1997. http://dx.doi.org/10.1007/978-1-4612-1992-7_9.

Full text
APA, Harvard, Vancouver, ISO, and other styles

Conference papers on the topic "Modeling the formation density"

1

Strommen, R., W. Keim, J. Finnegan, and P. Mehdizadeh. "Advances in Offshore Cathodic Protection Modeling Utilizing the Boundary Element Method." In CORROSION 1986. NACE International, 1986. https://doi.org/10.5006/c1986-86045.

Full text
Abstract:
Abstract As a basis for comparison, principles and practical aspects of offshore cathodic protection (CP) design have been reviewed. Additionally, a brief presentation of traditional methods for cathodic protection design analysis and cathodic protection criteria are discussed. This paper presents the capabilities of a computer program system for modeling cathodic protection using the Boundary Element Method (BEM). The program has capabilities for analyzes of dynamic and temporal effects on the level of cathodic protection simultaneously and, predicts the time dependent current density and pot
APA, Harvard, Vancouver, ISO, and other styles
2

Jelinek, Jiri, Bente O. Herfjord, Terje J. Blakset, Harald Osvoll, and Derek Morton. "The Use of Cathodic Protection Current Density Surveys for Optimising Offshore Surveys and Anode Retrofit Design." In CORROSION 1995. NACE International, 1995. https://doi.org/10.5006/c1995-95320.

Full text
Abstract:
Abstract CP retrofitting of offshore structures is a very cost intensive operation. The Claymore 'A' platform has a hybrid CP system and for several reasons, including high maintenance costs of the IC system, the number of IC anodes has been reduced and retrofitting of sacrificial anodes has been required. In order to optimize the retrofit work and reduce cost, CP computer modeling and CP surveys have been utilised. Both computer modeling and surveys confirmed very low current density levels for the platform below 20 mA/m2, considerably lower than traditional design rules. The computer model w
APA, Harvard, Vancouver, ISO, and other styles
3

Case, Raymundo, Hernan Rincon, and Xuanping Tang. "Prediction of the Temperature Effect on Pit Stability Using Stochastical Modeling of the Pit Localized Dissolution Kinetics." In CORROSION 2012. NACE International, 2012. https://doi.org/10.5006/c2012-01329.

Full text
Abstract:
Abstract The localized dissolution kinetics of the reactions taking place within an active pit are used to explain the stability of the pit propagation. Modeling the chemical kinetics of these reactions as a Markov Stochastical process, an algorithm was developed that provides the transient evolution with time of the metal dissolution current density within the pit in relation to the initial bulk environment conditions and the applied external potential. The predicted temperatures for spontaneous stable pitting using this stochastical algorithm for a 316L stainless steel under several reducing
APA, Harvard, Vancouver, ISO, and other styles
4

Sun, Yuhua, and Srdjan Nesic. "A Parametric Study and Modeling on Localized CO2 Corrosion in Horizontal Wet Gas Flow." In CORROSION 2004. NACE International, 2004. https://doi.org/10.5006/c2004-04380.

Full text
Abstract:
Abstract This study investigates localized CO2 corrosion on carbon steels in wet gas services both experimentally and theoretically. A 100 mm I.D., 40 meter long flow loop is employed to perform the corrosion studies along the top and the bottom of the pipe under stratified and annular flow conditions. Various corrosion monitoring techniques, including ER, LPR, and WL, and surface analysis techniques, including SEM/EDS, MM, and XRD are used during the experiments and for post-test analysis. The parametric study involves the systematic investigation for the effect of temperature, CO2 partial pr
APA, Harvard, Vancouver, ISO, and other styles
5

Guiling, Deng, and Zhong Jue. "Analysis and modeling non-Newtonian fluid transferring process and dot formation in contact dispensing." In 2005 Conference on High Density Microsystem Design and Packaging and Component Failure Analysis. IEEE, 2005. http://dx.doi.org/10.1109/hdp.2005.251441.

Full text
APA, Harvard, Vancouver, ISO, and other styles
6

Mauborgne, Marie-Laure, Rubi Rodriguez, Françoise Allioli, et al. "Enhancing Accuracy and Range of Sourceless Density." In 2024 SPWLA 65th Annual Symposium. Society of Petrophysicists and Well Log Analysts, 2024. https://doi.org/10.30632/spwla-2024-0108.

Full text
Abstract:
The determination of formation density is a fundamental and critical input for reservoir evaluation. At present, this crucial measurement requires a high-activity radioactive source. The sourceless neutron-gamma density (sNGD) measurement based on a pulsed-neutron generator and introduced in logging-while-drilling (LWD) technology more than a decade ago eliminates the radioactive source and the issues associated with its handling, transportation, storage, and abandonment. This sNGD algorithm has limitations in high-density formations, shales, large boreholes, and heavy mud. A new sourceless de
APA, Harvard, Vancouver, ISO, and other styles
7

Petrenko, O., E. S. Geskin, G. A. Atanov, A. Semko, and G. A. B. Goldenberg. "Numerical Modeling of Formation of High-Speed Water Slugs." In ASME 2002 International Mechanical Engineering Congress and Exposition. ASMEDC, 2002. http://dx.doi.org/10.1115/imece2002-39201.

Full text
Abstract:
The objective of this study is to investigate the phenomena that occur in the course of energy injection into water at an extremely high rate. In this study energy was injected via the powder explosion. In the course of this study a numerical model was constructed and used for process investigation. The model describes powder combustion, energy exchange between combustion products and the water load, formation of the shock waves in the water and superposition of waves. It was assumed that powder combustion is a stationary process, and the description of this process was used to determine the v
APA, Harvard, Vancouver, ISO, and other styles
8

Vincena, Stephen T. "Plasma Heating and Density Cavity Formation by Inertial Alfvén Waves: Laboratory Modeling of an Ionospheric Process." In 2021 International Conference on Electromagnetics in Advanced Applications (ICEAA). IEEE, 2021. http://dx.doi.org/10.1109/iceaa52647.2021.9539672.

Full text
APA, Harvard, Vancouver, ISO, and other styles
9

Jiao, Jian, Zhixiong Guo, and Kunal Mitra. "Modeling of Ultrashort Pulse Laser Ablation in Water." In ASME 2009 International Mechanical Engineering Congress and Exposition. ASMEDC, 2009. http://dx.doi.org/10.1115/imece2009-10405.

Full text
Abstract:
A numerical model combining the ultrafast radiative heat transfer and ablation rate equation for free electron density is proposed to investigate the transient process of plasma formation in distilled water. The focused beam propagation governed by the transient equation of radiative heat transfer is solved by the transient discrete ordinates method. The temporal evolution of free electron density governed by the rate equation is solved using a forth-order Runge-Kutta method. Two laser pulses: 30 ps and 300 fs are considered. Simulation of the dynamics of plasma formation is performed. The res
APA, Harvard, Vancouver, ISO, and other styles
10

Bulakh, Svyatoslav, Andrey Chibisov, and Aleksandr Fedorov. "THE BEHAVIOR OF AN ELECTRONIC QUBIT IN A 2D LAYER OF MOS2." In Mathematical modeling in materials science of electronic component. LCC MAKS Press, 2024. http://dx.doi.org/10.29003/m4256.mmmsec-2024/42-45.

Full text
Abstract:
This work investigates the possibility of using a monolayer of molybdenum disulfide (MoS2) for quantum computing through density functional theory (DFT) and the pseudopotential method. The creation of an electronic qubit in the monolayer occurs upon the formation of a sulfur vacancy.
APA, Harvard, Vancouver, ISO, and other styles

Reports on the topic "Modeling the formation density"

1

Russo, David, Daniel M. Tartakovsky, and Shlomo P. Neuman. Development of Predictive Tools for Contaminant Transport through Variably-Saturated Heterogeneous Composite Porous Formations. United States Department of Agriculture, 2012. http://dx.doi.org/10.32747/2012.7592658.bard.

Full text
Abstract:
The vadose (unsaturated) zone forms a major hydrologic link between the ground surface and underlying aquifers. To understand properly its role in protecting groundwater from near surface sources of contamination, one must be able to analyze quantitatively water flow and contaminant transport in variably saturated subsurface environments that are highly heterogeneous, often consisting of multiple geologic units and/or high and/or low permeability inclusions. The specific objectives of this research were: (i) to develop efficient and accurate tools for probabilistic delineation of dominant geol
APA, Harvard, Vancouver, ISO, and other styles
2

Richmond, Arthur D. Modeling Density Variation in the Thermosphere. Defense Technical Information Center, 2011. http://dx.doi.org/10.21236/ada545425.

Full text
APA, Harvard, Vancouver, ISO, and other styles
3

Kollman, W., and J. H. Chen. Pocket formation and the flame surface density equation. Office of Scientific and Technical Information (OSTI), 1998. http://dx.doi.org/10.2172/658164.

Full text
APA, Harvard, Vancouver, ISO, and other styles
4

Fondeur, F. F. Bubble Formation Modeling in IE-911. Office of Scientific and Technical Information (OSTI), 2000. http://dx.doi.org/10.2172/764653.

Full text
APA, Harvard, Vancouver, ISO, and other styles
5

Andrews, Sydney. Chemical Condensation During Planet Formation: Modeling Parameters. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1148970.

Full text
APA, Harvard, Vancouver, ISO, and other styles
6

Levy, M. Modeling of Intense Laser Driven High Energy Density Plasmas. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1313545.

Full text
APA, Harvard, Vancouver, ISO, and other styles
7

Seewaldt, Victoria, and Joseph Lo. Biologic and Computational Modeling of Mammographic Density and Stromal Patterning. Defense Technical Information Center, 2008. http://dx.doi.org/10.21236/ada487186.

Full text
APA, Harvard, Vancouver, ISO, and other styles
8

Givi, P., and M. R. Sheikhi. Filtered Density Function for Subgrid Scale Modeling of Turbulent Combustion. Defense Technical Information Center, 2009. http://dx.doi.org/10.21236/ada498253.

Full text
APA, Harvard, Vancouver, ISO, and other styles
9

Seewaldt, Victoria. Biological and Computational Modeling of Mammographic Density and Stromal Patterning. Defense Technical Information Center, 2010. http://dx.doi.org/10.21236/ada541950.

Full text
APA, Harvard, Vancouver, ISO, and other styles
10

Seewaldt, Victoria, and Joseph Lo. Biologic and Computational Modeling of Mammographic Density and Stromal Patterning. Defense Technical Information Center, 2009. http://dx.doi.org/10.21236/ada505306.

Full text
APA, Harvard, Vancouver, ISO, and other styles
We offer discounts on all premium plans for authors whose works are included in thematic literature selections. Contact us to get a unique promo code!