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Titlebook: Engineering Flow and Heat Exchange; Octave Levenspiel Book 19982nd edition Springer-Verlag US 1998 convection.design.heat transfer.radiati

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书目名称Engineering Flow and Heat Exchange
编辑Octave Levenspiel
视频video
丛书名称The Plenum Chemical Engineering Series
图书封面Titlebook: Engineering Flow and Heat Exchange;  Octave Levenspiel Book 19982nd edition Springer-Verlag US 1998 convection.design.heat transfer.radiati
描述Professor Levenspiel‘s text remains the most practical volumeavailable on the design of heat transfer equipment - anexcellent introduction to real-world applications for advancedundergraduates and an indispensable reference for professionals. Eachchapter includes illustrative examples and problems.
出版日期Book 19982nd edition
关键词convection; design; heat transfer; radiation
版次2
doihttps://doi.org/10.1007/978-1-4899-0104-0
isbn_ebook978-1-4899-0104-0Series ISSN 1566-7944
issn_series 1566-7944
copyrightSpringer-Verlag US 1998
The information of publication is updating

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Molecular Flowbegin to bounce from wall to wall of the flow channel rather than collide with each other. When this happens the character of the flow changes. Thus, different flow regimes are encountered depending on the value of the ratio.where Kn is called the Knudsen number.
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Combination of Heat Transfer Resistancesom by radiation from the flames and also by convection of moving air. These processes occur in parallel. There are many processes like these which involve a number of heat transfer steps, sometimes in a series, sometimes in parallel, sometimes in a more involved way.
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https://doi.org/10.1007/978-3-642-18898-5om by radiation from the flames and also by convection of moving air. These processes occur in parallel. There are many processes like these which involve a number of heat transfer steps, sometimes in a series, sometimes in parallel, sometimes in a more involved way.
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Mauro Moroni,Stefano Rusconi,Agostino Rival gases, liquid water, and liquids of simple molecules (ammonia, alcohol, benzene, oil, chloroform, butane, etc.) are Newtonians. Pastes, emulsions, biological fluids, polymers, suspensions of solids, and other mixtures are likely to be non-Newtonian.* This chapter deals with Newtonians.
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https://doi.org/10.1007/978-3-642-18898-5the wall; (ii) conduction through the wall; and (iii) convection on the outside of the wall. Next, consider a fireplace fire. Here heat reaches the room by radiation from the flames and also by convection of moving air. These processes occur in parallel. There are many processes like these which inv
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