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Entropy Generation via Ohmic Heating and Hall Current in Peristaltically-Flowing Carreau Fluid

机译:通过欧姆加热和蠕动流动的Carreau流体的霍尔电流产生熵生成

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摘要

The core objective of the present study is to examine entropy generation minimization via Hall current and Ohmic heating. Carreau fluid considerations interpret the unavailability of systems’ thermal energy (for mechanical work). The magneto hydrodynamic flow is in the channel, which is not symmetric. We have solved analytically the resulting nonlinear mathematical model. Moreover, physical exploration of important parameters on total entropy generation, temperature, and Bejan number is plotted and discussed. We observed that the generation of entropy takes place throughout the confined flow field y = W1 and y = W2 because of the viscous dissipation effect. In addition, reducing the operating temperature minimizes the entropy.
机译:本研究的核心目标是通过霍尔电流和欧姆加热来检查熵产生最小化。 Carreau流体考虑解释了系统热能(用于机械工作)的不可用。磁动力流体流动在通道中,该通道不对称。我们在分析上解决了由此产生的非线性数学模型。此外,绘制和讨论了对总熵生成,温度和BEJAN数的重要参数的物理探索。我们观察到由于粘性耗散效果,在整个限制流场Y = W1和Y = W2中发生熵在整个狭窄的流场Y = W1和Y = W2中发生。此外,减少操作温度最小化熵。

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