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MHD convection-dissipation heat transfer over a non-linear stretching and shrinking sheets in nanofluids with thermal radiation

机译:带有热辐射的纳米流体中非线性拉伸和收缩片材上的MHD对流耗散热传递

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In this work, the effects of thermal radiation and viscous dissipation on hydromagnetic mixed convection flow over a non-linear stretching and shrinking sheets in nanofluids have been studied numerically. Similarity equations were solved numerically using fifth-order Runge-Kutta-Fehlberg method with shooting technique. Numerical calculations are carried out for different values of physical parameters. An analysis of the results shows that the velocity and thermal fields are influenced appreciably by the magnetic field, effective Prandtl number, local Grashof number, Eckert number, power-law stretching parameter and nanopartides volume fraction. The results for local skin-friction and local Nusselt number are also presented and discussed. Dual solutions are presented for velocity and temperature fields for various values of magnetic field and suction/injection parameters.
机译:在这项工作中,数值研究了热辐射和粘滞耗散对纳米流体中非线性拉伸和收缩片上的水磁混合对流的影响。使用带有射击技术的五阶Runge-Kutta-Fehlberg方法对相似方程进行数值求解。对不同物理参数值进行数值计算。结果分析表明,磁场,有效Prandtl数,局部Grashof数,Eckert数,幂律拉伸参数和纳米粒子的体积分数对速度和热场都有明显的影响。还介绍和讨论了局部皮肤摩擦和局部Nusselt数的结果。针对速度和温度场,针对各种磁场值和吸入/注入参数,提出了双重解决方案。

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