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Viscous dissipation effect on entropy generation in curved square microchannels

机译:粘性耗散对弯曲方形微通道中熵产生的影响

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The viscous dissipation effect on the thermodynamic performance of the curved square microchannels in laminar flow is numerically investigated. The classical Navier-Stokes equations are adopted; aniline and ethylene glycol are selected as the working fluids. The results show that the heat transfer entropy generation number and frictional entropy generation number augment relatively under viscous dissipation effect for the case of fluid heated, and the opposite results can be found for the case of fluid cooled. The heat transfer entropy generation number increases with Reynolds number at large Reynolds number region under viscous dissipation effect when ethylene glycol is heated. The total entropy generation number extremum exists for aniline, and the extremum happens earlier when aniline is heated than when aniline is cooled. The smaller the curvature radius is, the earlier the extremum appears. The extremum does not occur for ethylene glycol due to the predomination of frictional entropy generation in the total entropy generation.
机译:数值研究了粘性耗散对层流中弯曲方形微通道热力学性能的影响。采用经典的Navier-Stokes方程。选择苯胺和乙二醇作为工作流体。结果表明,在流体加热的情况下,在粘性耗散效应下,传热熵的产生数和摩擦熵的产生数相对增加,而在流体冷却的情况下,则相反。在加热乙二醇时,在粘性耗散作用下,在大雷诺数区域,传热熵的产生数随雷诺数增加而增加。苯胺存在总熵产生数极值,并且在加热苯胺时比在冷却苯胺时极快地发生。曲率半径越小,极值出现越早。由于在总熵产生中摩擦熵产生占主导地位,因此乙二醇不会出现极值。

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