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Second law analysis of MHD third-grade fluid flow through the microchannel

机译:MHD三级流体通过微通道的第二律分析

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The present study analyses the phenomena of entropy generation of magneto third-grade fluid flow through the microchannel. The significance of Joule heating, viscous heating and internal heat source is also scrutinised. The non-dimensional forms of the corresponding governing equations of the physical phenomenon with the associated boundary conditions for third-grade fluid flow and heat transfer has been solved using finite element method. The impact of various parameters on the flow and heat transfer behaviour, entropy generation and Bejan number is explained using graphs. The obtained results are examined through the plots. The results showed that an increase in the fluid parameter reduces the activity of the fluid flow and, as a result, the temperature is diminished. An enhancement in fluid motion and temperature is obtained by increasing the viscosity index. We noted that the effect of Hartmann number on the rate of local entropy generation and Bejan number is sinusoidal in nature.
机译:本研究分析了通过微通道流过微通道的磁体三级流体流动现象的现象。 仔细加热,粘性加热和内热源的意义也仔细仔细筛选。 使用有限元法解决了具有相关边界条件的物理现象的相应控制方程的相应控制方程的非尺寸形式。 使用图说明各种参数对流量和传热行为,熵生成和BEJAN编号的影响。 通过地图检查所获得的结果。 结果表明,流体参数的增加减少了流体流动的活性,结果减少了温度。 通过增加粘度指数来获得流体运动和温度的增强。 我们指出,Hartmann号对当地熵生成率和Bejan号的影响是正弦的。

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