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Artykuły w czasopismach na temat "Humid thermal ratio"

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Liang, Shuang, and Wang Yan. "The Optimization Ratio Study of Steady State Heat Transfer and Dynamic Heat Transfer in Hot-Humid and Cold-Humid Area." Advanced Materials Research 935 (May 2014): 52–56. http://dx.doi.org/10.4028/www.scientific.net/amr.935.52.

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By means of the establishment of thermal stability evaluation model and simulating in Huafeng factory residential building ,the relationship between the D value and building thermal stability and the optimal distribution ratio are obtained.The results show that:at the shape coefficient≤0.40, the most optimal matching relation is :heat transfer coefficient is 1.0, thermal inertia index is 2.0;at the shape coefficient >0.40, the most optimal matching relation is :heat transfer coefficient is 0.8, thermal inertia index is 2.0.
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P.K. SHUKLA and TARUN ADAK. "Anthracnose disease dynamics of mango orchards in relation to humid thermal ratio under subtropical climatic condition." Journal of Agrometeorology 19, no. 1 (2017): 56–61. http://dx.doi.org/10.54386/jam.v19i1.756.

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Incidence and severity of mango anthracnose was studied during 2013, 2014 and 2015 for its relation with weather parameters. Twenty two mango orchards of cv. Dashehari, aged between 20-35 years in Lucknow district of Uttar Pradesh were selected for this study. The statistical analysis at different locations indicated highest incidence of 40.0, 29.2 and 29.6 per cent in three years respectively. Differences in disease severity were also observed among the years and within the orchards. Cooler months had high humid thermal ratio (HTR) values and warmer months mostly had low (1.2 to 3.5) HTR valu
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Sobhy, Mohammed, Mohammad Alakel Abazid, and Fatemah HH Al Mukahal. "Electro-thermal buckling of FG graphene platelets-strengthened piezoelectric beams under humid conditions." Advances in Mechanical Engineering 14, no. 4 (2022): 168781322210910. http://dx.doi.org/10.1177/16878132221091005.

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In this article, thermal buckling analysis of multilayer functionally graded graphene platelets (FGGPL) strengthened piezoelectric beam subjected to external electric voltage as well as humid conditions is illustrated. The effective Young’s modulus of the nanocomposite beam is estimated within the framework of Halpin-Tsai model. While, Poisson’s ratio, mass density, and piezoelectric properties are calculated by the rule of the mixture. Four FGGPL distribution types are considered in this study. A refined two-unknown beam theory considering shear deformation as well as thickness stretching eff
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Munonye, J. O., C. C. Munonye, and A. C. Esiegwu. "Assessment of thermal comfort of broiler birds in warm - humid climate." Tropical Agricultural Research and Extension 26, no. 3 (2023): 231–40. http://dx.doi.org/10.4038/tare.v26i3.5639.

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An experiment was conducted in a poultry house located at the Faculty of Agriculture, Alex Ekwueme Federal University, Ndufu Alike, Nigeria to assess the thermal comfort of broiler birds of 0-8 weeks old. ASHRAE standard instruments were used to measure environmental parameters within two years (May to July 2020: rainy season; Dec. to Feb. 2021: dry season and May to July 2021: rainy season; Dec. to Feb. 2022: dry season). During the survey, the birds were exposed to environmental variables such as air temperature, relative humidity, and airflow. A strong correlation was found between the ambi
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Alipour, Bahareh, Maryam Karami, and Parisa Heidarnejad. "Dynamic simulation of the performance of a solar assisted heat pump in different climates." International Journal of New Findings in Engineering, Science and Technology 2, no. 1 (2024): 64–73. http://dx.doi.org/10.61150/ijonfest.2024020108.

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One method to reduce energy consumption in buildings is using solar-assisted heat pumps, in which the combination of heat pump and solar collector is used to improve the thermal performance. In this paper, TRNSYS and EES software are used to simulate the performance of an indirect expansion solar-assisted heat pump. Dynamic simulation of the system is performed by changing parameters such as the mass flow rate of the collector working fluid and the collector area in five climates including Hot/Dry, Cold/Dry, Moderate/Humid, Hot/semi-Humid, and Hot/Humid. The results show that, in January, the
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Huang, Xianfeng, Congmin Li, and Zhixiang Zhuang. "Analysis of Height-to-Width Ratio of Commercial Streets with Arcades Based on Sunshine Hours and Street Orientation." Applied Sciences 11, no. 4 (2021): 1706. http://dx.doi.org/10.3390/app11041706.

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By extracting and simplifying the characteristics of commercial streets with arcades (Qilou) in Nanning, the tissue map of Qilou streets which reflects the urban morphology, including the road network form, block scale, building scale and other characteristics in a hot and humid area is obtained. In addition, the sunshine simulation is performed by using sunshine design software in an environment comprising streets with arcades to simulate street sunlight environments under various conditions. The relationship among street height-to-width ratio, sunshine hours, and street orientation angle is
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Liu, Qizhuo, Guilan Li, Jiaxin Wan, Wenchao Shi, Songtao Si, and Qi Wang. "Polyurethane porous elastomeric mixture composition design and aging properties." Journal of Physics: Conference Series 2961, no. 1 (2025): 012016. https://doi.org/10.1088/1742-6596/2961/1/012016.

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Abstract Polyurethane Porous Elastic Road Surface (PERS) has the characteristics of energy saving, emission reduction, carbon reduction, drainage, noise reduction, and de-icing. However, the aging properties of PERS have been rarely studied. The optimal gradation of the polyurethane mixtures has been designed in this paper. The concentration of polyurethane has been determined as 4.1%. Through scatter tests and segregation leakage tests, we analyzed the variation curves of the void ratio. Under aging conditions of thermo-oxidative, humid-heat, and without aging, through seepage test and wave t
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Wang, Junhui, Zhijun Wan, Hongwei Zhang, et al. "Effects of Thermal Water Upwelling on Microclimate Change in the High Geo-Temperature Roadway." Shock and Vibration 2021 (March 3, 2021): 1–14. http://dx.doi.org/10.1155/2021/6639413.

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Deep-circling thermal water upwelling and trickling to high geo-temperature roadway obviously alter the microclimate in mines, which brings difficulty to the prediction of airflow temperature and humidity. This is the basis of air-conditioning cooling load calculation. The heat and mass transfer between trickling water and airflow is rather complicated. Moreover, humid air exhibits the accumulation effect of heat and humidity in the long-distance flow process. In this paper, an apparatus was designed and developed to explore the influence of thermal water trickling on the airflow thermal param
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Liu, Xiaoyan, Ping Li, and Jingsheng Pan. "Study on the aging performance of SBS modified asphalt in humid and hot environment." PLOS One 20, no. 6 (2025): e0325103. https://doi.org/10.1371/journal.pone.0325103.

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This study focused on the aging issues of asphalt pavement in high-temperature and high-humidity climatic zones, using SBS-modified asphalt with different additive contents as research objects to systematically investigate the aging evolution mechanisms under coupled hygrothermal conditions. A dual-temperature control system (60°C and 70°C) was constructed to conduct thermal-oxidative aging and wet-dry cycle aging tests. Multidimensional indicators including penetration ratio, softening point ratio, and ductility ratio were utilized to characterize the time-dependent aging characteristics of m
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Al-Tamimi, Nedhal, and Abdultawab Qahtan. "Influence of Glazing Types on the Indoor Thermal Performance of Tropical High-Rise Residential Buildings." Key Engineering Materials 692 (May 2016): 27–37. http://dx.doi.org/10.4028/www.scientific.net/kem.692.27.

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In tropical climates, the solar radiation absorption of glazed windows results in overheated indoor environments and increased cooling energy loads during daytime. Meanwhile, situations differ during nighttime. The present study focuses on the effects of glazing type on the indoor temperature in high-rise residential buildings in the hot and humid climate of Malaysia. The primary objective of this study is to assess the effects of six glazing types on the indoor air temperature of the base case room oriented toward the southwest with a Window Wall Ratio WWR of 45% under both ventilated and unv
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Części książek na temat "Humid thermal ratio"

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Paramita, Beta, Muhammad Rabbani Nurlette, and Aprilia Nurul Hanissa. "Enhancing Facade Design to Improve Energy Efficiency of Office Towers in the Hot and Humid Climate Region (Case Study: Bandung, Indonesia)." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-8401-1_16.

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AbstractPerformance Based Design (PBD) makes the design process easier to achieve optimal energy efficiency in office towers. Building performance is impacted by various factors, including decisions related to the shape of the building, its orientation, the building envelope, and the building façade. This study aims to determine the building energy consumption by applying the office building's secondary skin during the hottest season in the hot and climate region. A design solution was obtained by utilizing Sefaira with ASHRAE 90.1 – 2013-based parameters for the building performance analysis
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Streszczenia konferencji na temat "Humid thermal ratio"

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Kuroki, Hidetoshi, Takanori Shibata, Tomomi Koganezawa, Nobuaki Kizuka, Shigeo Hatamiya, and Shinya Marushima. "Development of Elemental Technologies for Advanced Humid Air Turbine System." In ASME Turbo Expo 2006: Power for Land, Sea, and Air. ASMEDC, 2006. http://dx.doi.org/10.1115/gt2006-90639.

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The Advanced Humid Air Turbine (AHAT) system improves the thermal efficiency of gas turbine power generation by using a humidifier, a Water Atomization Cooling (WAC) system, and a heat recovery system, thus eliminating the need for an extremely high firing temperature and pressure ratio. The following elemental technologies have been developed to realize the AHAT system: (1) a broad working range and high-efficiency compressor that utilizes the WAC system to reduce compression work, (2) turbine blade cooling techniques that can withstand high heat flux due to high-humidity working gas, and (3)
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Araki, Hidefumi, Shinichi Higuchi, Shinya Marushima, and Shigeo Hatamiya. "Design Study of a Humidification Tower for the Advanced Humid Air Turbine System." In ASME Turbo Expo 2005: Power for Land, Sea, and Air. ASMEDC, 2005. http://dx.doi.org/10.1115/gt2005-68671.

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The AHAT (advanced humid air turbine) system, which can be equipped with a heavy-duty, single-shaft gas turbine, aims at high efficiency equal to that of the HAT system. Instead of an intercooler, a WAC (water atomization cooling) system is used to reduce compressor work. The characteristics of a humidification tower (a saturator), which is used as a humidifier for the AHAT system, were studied. The required packing height and the exit water temperature from the humidification tower were analyzed for five virtual gas turbine systems with different capacities (1MW, 3.2MW, 10MW, 32MW and 100MW)
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Watanabe, Yutaka, Toru Takahashi, and Masashi Nakamoto. "Dynamic Simulation of Startup Characteristics for the Advanced Humid Air Turbine System." In ASME Turbo Expo 2017: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/gt2017-64699.

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Thermal power generation systems have played an important role to adjust power supply and demand balance in power grid due to the high operational flexibility. It is required for next future thermal power generation systems to have higher thermal efficiency and operational flexibility, not only to reduce CO2 emission but also to cope with the increase of electricity generation by renewable energy sources which are changeable depending on the weather. The Advanced Humid Air Gas Turbine (AHAT) system is expected to meet these requirements and now proceeding with the development by Mitsubishi Hit
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Xiao, Yunhan, Rumou Lin, and Ruixian Cai. "System Optimization of Humid Air Turbine Cycle." In ASME 1994 International Gas Turbine and Aeroengine Congress and Exposition. American Society of Mechanical Engineers, 1994. http://dx.doi.org/10.1115/94-gt-240.

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The humid air turbine (HAT) cycle, proposed by Mori et al. and recently developed by Rao et al. at Flour Daniel, has been identified as a promising way to generate electric power at high efficiency, low cost and simple system relative to combined cycle and steam injection gas turbine cycle. It has aroused considerable interest. Thermodynamic means, such as intercooling, regeneration, heat recovery at low temperature and especially non-isothermal vaporisation by multi-phase and multi-component, are adopted in HAT cycle to reduce the external and internal exergy losses relative to the energy con
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Takahashi, Toru, Yutaka Watanabe, Hidefumi Araki, and Takashi Eta. "Study of Humid Air Gas Turbine System by Experiment and Analysis." In ASME 2011 Power Conference collocated with JSME ICOPE 2011. ASMEDC, 2011. http://dx.doi.org/10.1115/power2011-55404.

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Humid air gas turbine systems that are regenerative cycle using humidified air can achieve higher thermal efficiency than gas turbine combined cycle power plant (GTCC) even though they do not require a steam turbine, a high combustion temperature, or a high pressure ratio. In particular, the advanced humid air gas turbine (AHAT) system appears to be highly suitable for practical use because its composition is simpler than that of other systems. Moreover, the difference in thermal efficiency between AHAT and GTCC is greater for small and medium-size gas turbines. To verify the system concept an
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Klara, Julianne M., Robert M. Enick, Scott M. Klara, and Lawrence E. Van Bibber. "Assessment of Humid Air Turbines in Coal-Fired High Performance Power Systems." In ASME 1996 International Gas Turbine and Aeroengine Congress and Exhibition. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/96-gt-091.

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The purpose of this study is to assess the feasibility of incorporating a Humid Air Turbine (HAT) into a coal-based, indirectly fired High Performance Power System (HIPPS). The HIPPS/HAT power plant exhibits a one percentage point greater thermal efficiency than the combined-cycle HIPPS plant. The capital costs for the HIPPS and HIPPS/HAT plants with identical net power output are nearly equivalent at $1380/kW. Levelized cost of electricity (COE) for the same size plants is 5.3 cents/kWh for the HIPPS plant and 5.4 cents/kWh for the HIPPS/HAT plant; the HIPPS/HAT plant improved thermal efficie
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Higuchi, Shinichi, Tomomi Koganezawa, Yasuhiro Horiuchi, Hidefumi Araki, Takanori Shibata, and Shinya Marushima. "Test Results From the Advanced Humid Air Turbine System Pilot Plant: Part 1—Overall Performance." In ASME Turbo Expo 2008: Power for Land, Sea, and Air. ASMEDC, 2008. http://dx.doi.org/10.1115/gt2008-51072.

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The AHAT (advanced humid air turbine) system is based on a recuperated cycle using high-humidity air. This system improves thermal efficiency by using the high-humidity air as working gas. After many studies and elemental tests, a 4MW-class pilot plant was planned and built in order to verify feasibility of the AHAT system from the viewpoints of heat cycle characteristic and engineering. This plant consists of a gas turbine, a recuperator, a humidification tower, a water recovery system, an economizer, and other components. The gas turbine consists of a two-stage centrifugal compressor (pressu
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Koronaki, I. P., R. I. Christodoulaki, V. D. Papaefthimiou, and E. D. Rogdakis. "Thermodynamic Analysis of a Liquid Desiccant Cooling System Under Mediterranean Climatic Conditions." In ASME 2012 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/imece2012-85577.

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Liquid desiccant air conditioning systems have recently been attracting attention, owing to their merits in handling the latent heat. Desiccant systems avoid not only the energy penalty caused by overcooling and reheating, but also the bacteria generation caused by condensed water. They can also significantly reduce the electricity peak load caused by conventional compression type air conditioning systems, especially in hot and humid regions. Desiccant systems are thus more energy efficient, healthy and environmentally friendly than conventional mechanical cooling. This paper presents the resu
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Koganezawa, Tomomi, Keisuke Miura, Takeo Saito, Kazuki Abe, and Hiroshi Inoue. "Full Scale Testing of a Cluster Nozzle Burner for the Advanced Humid Air Turbine." In ASME Turbo Expo 2007: Power for Land, Sea, and Air. ASMEDC, 2007. http://dx.doi.org/10.1115/gt2007-27737.

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The advanced humid air turbine (AHAT) system, which has a humidifier and a heat recovery system has the advantage of improving the thermal efficiency of gas turbine power generation without needing an extremely high firing temperature and pressure ratio. A pilot plant and a prototype gas turbine adapted to the AHAT system have been developed. Before the pilot plant test, an experimental study using a combustion test rig was carried out to obtain the characteristics of a prototype combustor and it is described in this presentation. The combustion conditions in the AHAT system are characterized
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AlShuhail, Khalid, Abdelsalam Aldawoud, and Syarif Junaidi. "Termite as Biomimicry Solution for Enhancing Building Envelope: A Comparative Model Case Study in the UAE." In International Symposium on Engineering and Business Administration. Trans Tech Publications Ltd, 2023. http://dx.doi.org/10.4028/p-srt4zz.

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The building envelope is considered the boundary in which a building interacts with the surrounding environment. This paper aims to enhance building envelope design by biomimicry of the termite mound shape for reducing the energy demand as well as maintaining comfortable indoor temperatures. In this paper, two models with the same internal dimensions, cross-sectional area, and block material were constructed. The first model is a regular block model (RB) that represents a typical house construction. The second model (TM) development including the form and the envelope design is inspired by the
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