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Heat and Mass Transfer Analysis of Peristaltic Flow of Nanofluid in a Vertical Rectangular Duct by Using the Optimized Series Solution and Genetic Algorithm

机译:优化级数解和遗传算法的纳米管在垂直矩形管中蠕变流动的传热和传质分析

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In the present analysis, we have examined the effects of heat and mass transfer on the study of peristaltic transport of nanofluid in a three dimensional vertical rectangular channel. The governing equations have been made simple under the constraints of low Reynolds number and long wavelength. Under these limitations, we obtain the highly non linear, non homogeneous and coupled partial differential equations. The resulting system of equations have been solved by employing the hybrid analytical and numerical techniques. The obtained results have been discussed through tables and graphs. The expressions for velocity, temperature, nanoparticle concentration, pressure gradient and pressure rise have been plotted for two and three dimensions. In the end, the trapping phenomenon has also been considered through streamlines.
机译:在当前的分析中,我们已经研究了传热和传质对三维垂直矩形通道中纳米流体蠕动传输研究的影响。在低雷诺数和长波长的约束下,控制方程变得简单。在这些限制下,我们获得了高度非线性,非齐次和耦合的偏微分方程。通过使用混合分析和数值技术已经解决了所得的方程组。通过表格和图表讨论了获得的结果。绘制了二维和三维的速度,温度,纳米颗粒浓度,压力梯度和压力上升的表达式。最后,还通过流线考虑了诱捕现象。

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