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首页> 外文期刊>AIP Advances >Effect of hall current on MHD flow of a nanofluid with variable properties due to a rotating disk with viscous dissipation and nonlinear thermal radiation
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Effect of hall current on MHD flow of a nanofluid with variable properties due to a rotating disk with viscous dissipation and nonlinear thermal radiation

机译:霍尔电流对具有粘性耗散和非线性热辐射的旋转圆盘的性质可变的纳米流体的MHD流动的影响

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Analysis of the MHD Nanofluid boundary layer flow over a rotating disk with a constant velocity in the presence of hall current and non-linear thermal radiation has been covered in this work. The variation of viscosity and thermal conductivity of the fluid due to temperature and nanoparticles concentration and size is considered. The problem described by a system of P.D.E that converted to a system of ordinary differential equations by the similarity transformation technique, the obtained system solved analytically using Optimal Homotopy Asymptotic Method (OHAM) with association of mathematica program. The velocity profiles and temperature profiles of the boundary layer over the disk are plotted and investigated in details. Moreover, the surface shear stress, rate of heat transfer explained in details.
机译:这项工作已涵盖了在存在霍尔电流和非线性热辐射的情况下以恒定速度对旋转磁盘上的MHD纳米流体边界层流动进行的分析。考虑了由于温度以及纳米颗粒浓度和尺寸导致的流体粘度和导热率的变化。由P.D.E系统描述的问题通过相似性转换技术转换为常微分方程组,所获得的系统使用最优同伦渐近方法(OHAM)结合了Mathematica程序进行了解析求解。绘制并分析了磁盘上边界层的速度分布和温度分布。此外,对表面剪切应力,传热速率进行了详细说明。

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