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Titlebook: Recent Trends in Thermal and Fluid Sciences; Select Proceedings o Achhaibar Singh,Debi Prasad Mishra,Ganapathi Bhat Conference proceedings

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书目名称Recent Trends in Thermal and Fluid Sciences
副标题Select Proceedings o
编辑Achhaibar Singh,Debi Prasad Mishra,Ganapathi Bhat
视频video
概述Contains the recent research work in thermal and fluid sciences.Focuses on theoretical and practical aspects of thermal and fluid systems.Presents select proceedings of INCOME 2023
丛书名称Lecture Notes in Mechanical Engineering
图书封面Titlebook: Recent Trends in Thermal and Fluid Sciences; Select Proceedings o Achhaibar Singh,Debi Prasad Mishra,Ganapathi Bhat Conference proceedings
描述.The book presents select proceedings of the International Conference on Mechanical Engineering (INCOME 2023). It presents the topics related to thermal and fluid mechanics including various sources of energy. The topics covered include theoretical and practical aspects of thermal and fluid systems and thermal design of the related equipment. The book also includes latest topics such as solar energy, computational techniques, enhancement of energy storage capacity, fluid solid interaction, and hybrid energy systems. The book is a valuable reference for beginners, researchers, and professionals interested in research, design, and development in thermal and fluid sciences..
出版日期Conference proceedings 2024
关键词Theoretical and Experimental Fluid Dynamics; Fluid Mechanics; Heat Transfer; Numerical Methods in Heat
版次1
doihttps://doi.org/10.1007/978-981-97-5373-4
isbn_softcover978-981-97-5372-7
isbn_ebook978-981-97-5373-4Series ISSN 2195-4356 Series E-ISSN 2195-4364
issn_series 2195-4356
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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Experimentation on Solar Water Heating Augmented Thermosiphon Evacuated Tube Solar Collectorlength of 17 m. Solar collectors are mounted on frames inclined at 28 degrees. For the inlet temperature of 32.6 °C, outlet temperature of 45.1 °C, and solar irradiation of 902 W/m., the maximum efficiency of the system comes out to be 34%. That amount of water is sufficient for 2–3 persons for dail
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Combustion of Hydrogen and Oxygen Under Different Pressure Conditions in a Single-Injector Test Caseropellants. These comparisons were used to study the reliability and precision of employing non-premixed combustion using the laminar flamelet model and the chemical equilibrium model for RCM 2 and RCM 3, respectively, in predicting the flame profile and thermal environment in a liquid rocket engine
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