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Entropy generation minimization: Darcy-Forchheimer nanofluid flow due to curved stretching sheet with partial slip

机译:最小的熵产生:由于弯曲的拉伸片具有部分滑移,Darcy-Forchheimer纳米流体流动

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This paper explores the Darcy-Forchheimer two-dimensional flow of nanofluid due to curved stretching sheet. Brownian motion and thermophoresis effects are taken in to account. Bejan number and entropy generation are analyzed in presence of MHD, convective boundary conditions, partial slip and viscous dissipation. Nonlinear ordinary differential systems are developed through transformations. Convergent series solutions are constructed by using NDSolve of MATHEMATICA. Behavior of involved variables on flow characteristics is shown through graphs. Velocity reduces for higher slip parameter and Forchheimer number. Temperature and concentration have direct relation with thermal and solutal Biot numbers. An increase in entropy generation is seen for higher curvature parameter, porosity parameter and Brinkman number. Decrease in Bejan number is observed for higher estimations of Brinkman number and slip parameter. Comparative study of present results with previous information in a limiting sense is made.
机译:本文探讨了由于弯曲拉伸片而产生的Darcy-Forchheimer二维纳米流体流。考虑了布朗运动和热泳效应。在存在MHD,对流边界条件,部分滑动和粘性耗散的情况下,分析了Bejan数和熵的产生。非线性常微分系统是通过变换来开发的。使用MATHEMATICA的NDSolve构建收敛系列解决方案。通过图表显示了所涉及变量对流量特性的影响。对于较高的滑移参数和Forchheimer数,速度会降低。温度和浓度与热和溶液的毕奥特数直接相关。对于较高的曲率参数,孔隙率参数和布林克曼数,可以看到熵产生的增加。对于更高的布林克曼数和滑移参数估计,观察到Bejan数减少。将当前结果与以前的信息进行了有限度的比较研究。

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