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Titlebook: Handbook of Thermal Science and Engineering; Francis A. Kulacki Living reference work 20200th edition Bio-transport.Combined Heat and Mas

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书目名称Handbook of Thermal Science and Engineering
编辑Francis A. Kulacki
视频video
概述Encompasses a wide range of traditional, contemporary, and continuously evolving topics in thermal science and engineering, emphasizing more recently established fields not found in other handbooks.Or
图书封面Titlebook: Handbook of Thermal Science and Engineering;  Francis A. Kulacki Living reference work 20200th edition  Bio-transport.Combined Heat and Mas
描述This Handbook provides researchers, faculty, design engineers in industrial R&D, and practicing engineers in the field concise treatments of advanced and more-recently established topics in thermal science and engineering, with an important emphasis on micro- and nanosystems, not covered in earlier references on applied thermal science, heat transfer or relevant aspects of mechanical/chemical engineering. Major sections address new developments in heat transfer, transport phenomena, single- and multiphase flows with energy transfer, thermal-bioengineering, thermal radiation, combined mode heat transfer, coupled heat and mass transfer, and energy systems. Energy transport at the macro-scale and micro/nano-scales is also included. The internationally recognized team of authors adopt a consistent and systematic approach and writing style, including ample cross reference among topics, offering readers a user-friendly knowledgebase greater than the sum of its parts, perfect for frequent consultation. The Handbook of Thermal Science and Engineering is ideal for academic and professional readers in the traditional and emerging areas of mechanical engineering, chemical engineering, aerospa
出版日期Living reference work 20200th edition
关键词Bio-transport; Combined Heat and Mass Transfer; Heat and Fluid Flow in Micro-systems and Rheological F
doihttps://doi.org/10.1007/978-3-319-32003-8
isbn_ebook978-3-319-32003-8
The information of publication is updating

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Design of Thermal Systems,t is important to couple the modeling and experimental data with the performance and design of the system. Optimization in terms of the operating conditions, as well as of the system hardware, is needed to minimize costs and enhance product quality and system performance. Different optimization stra
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Free Convection: Cavities and Layers, geophysical applications (such as spring contamination) and microfluidics (such as leftward flow in a nodal cavity that determines left-right symmetry breaking in a developing embryo) to zoological fluid dynamics (rotation of pond snail embryos to improve their oxygen supply) and biomimetic devices
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Free Convection: External Surface,the heat transfer from a horizontal heated surface has also been considered. The heat transfer rate from bodies with wavy surfaces has been considered next with attention being given to situations involving two-dimensional flow over vertical and horizontal surfaces and to the effect of surface wavin
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