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首页> 外文期刊>Journal of Thermodynamics >Second Law Analysis of Laminar Flow in a Circular Pipe Immersed in an Isothermal Fluid
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Second Law Analysis of Laminar Flow in a Circular Pipe Immersed in an Isothermal Fluid

机译:浸入等温流体的圆形管道中层流的第二定律分析

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摘要

Entropy generation and pumping power to heat transfer ratio (PPR) of a laminar flow, for a circular tube immersed in an isothermal fluid, are studied analytically in this paper. Two different fluids, namely, water and ethylene glycol, are chosen to study the influence of fluid properties on entropy generation and PPR. The expressions for dimensionless entropy generation, Bejan number and PPR are derived in a detailed way and their variations with Reynolds number, external Biot number, and the dimensionless temperature difference are illustrated. The results of the analysis are compared with those for a laminar flow in a circular tube with uniform wall temperature boundary condition. Finally, a criterion is established to determine which type of thermal boundary conditions is more suitable for a particular fluid, with respect to its influence on entropy generation.
机译:本文对圆形管浸入等温流体中的层流的熵产生和泵浦功率与传热比(PPR)进行了分析研究。选择两种不同的流体,即水和乙二醇,以研究流体性质对熵产生和PPR的影响。详细推导了无量纲熵生成,Bejan数和PPR的表达式,并说明了它们随雷诺数,外部比奥数和无量纲温差的变化。将分析结果与壁温边界条件均匀的圆管中的层流进行了比较。最后,就其对熵产生的影响,建立一个标准来确定哪种类型的热边界条件更适合特定的流体。

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