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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part A. Defect and Diffusion Forum >Effect of Nonlinear Thermal Radiation on MHD Boundary Layer Flow and Melting Heat Transfer of Micro-Polar Fluid over a Stretching Surface with Fluid Particles Suspension
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Effect of Nonlinear Thermal Radiation on MHD Boundary Layer Flow and Melting Heat Transfer of Micro-Polar Fluid over a Stretching Surface with Fluid Particles Suspension

机译:非线性热辐射对微极性流体在拉伸表面上的MHD边界层流动和熔化热传递的影响,流体颗粒悬浮液

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摘要

A comprehensive numerical study is conducted to investigate effect of nonlinear thermal radiation on MHD boundary layer flow and melting heat transfer of micro polar fluid over a stretching surface with fluid particles suspension. Using suitable transformations, the governing equations of the problem are transformed in to a set of coupled nonlinear ordinary differential equations and then they are solved numerically using the Runge–Kutta–Fehlberg-45 method with the help of shooting technique. Authentication of the current method is proved by having compared with established results with limiting solution. The impact of the various stimulating parameters on the flow and heat transfer is analyzed and deliberated through plotted graphs in detail. We found that the velocity, angular velocity and temperature fields increase with an increase in the melting process of the stretching sheet. Also it is visualize that the shear stress factor is lower for micro polar fluids as compared to Newtonian fluids, which may be beneficial in flow and heat control of polymeric processing.
机译:进行了综合数值研究,以研究非线性热辐射对具有流体颗粒悬架的拉伸表面MHD边界层流动和微极性流体熔化热传递的影响。使用合适的变换,问题的控制方程被转换为一组耦合的非线性常微分方程,然后在拍摄技术的帮助下使用跳动-Kutta-Fehlberg-45方法数值求解它们。通过与具有限制溶液的既定结果相比,证明了当前方法的认证。通过绘制的图谱详细地分析和刻心各种刺激参数对流动和传热的影响。我们发现速度,角速度和温度场随着拉伸片的熔化过程的增加而增加。同样,与牛顿流体相比,微极性流体的剪切应力因子较低,这可能是有益的聚合物加工的流动和热控制。

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