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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >Effect of Slip and Convective Boundary Conditions on Entropy Generation in a Porous Channel due to Micropolar Fluid Flow
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Effect of Slip and Convective Boundary Conditions on Entropy Generation in a Porous Channel due to Micropolar Fluid Flow

机译:单微柱流体流动的滑动和对流边界条件对多孔通道熵产生的影响

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摘要

This article presents the effect of convective heating and velocity slip on flow generation of an incompressible micropolar fluid through a porous channel. The flow is induced by a constant axial pressure gradient applied in the flow direction. The non-linear governing equations are linearized using the quasilinearization technique and then solved by Chebyshev spectral collocation method. The numerical values of the velocity, microrotation and temperature are used to derive the corresponding entropy generation number and Bejan number within the porous channel. The influences of pertinent parameters on velocity, microrotation, temperature, entropy generation and Bejan number are discussed through graphs. It is observed that the convective heating tends to increase the entropy generation within the channel.
机译:本文介绍了对流加热和速度滑移对通过多孔通道的不可压缩的微柱流体的流动产生的影响。 通过施加在流动方向上的恒定轴向压力梯度诱导流动。 使用Quasilinearization技术线性化的非线性控制方程,然后由Chebyshev光谱搭配方法解决。 速度,微观和温度的数值用于导出多孔通道内的相应熵生成数和Bejan数。 通过图表讨论了相关参数对速度,微观,温度,熵生成和BEJAN数的影响。 观察到,对流加热倾向于增加通道内的熵产生。

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