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首页> 外文期刊>Applied Mathematics >Viscous Dissipation and Radiation Effects on MHD Boundary Layer Flow of a Nanofluid Past a Rotating Stretching Sheet
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Viscous Dissipation and Radiation Effects on MHD Boundary Layer Flow of a Nanofluid Past a Rotating Stretching Sheet

机译:粘性耗散和辐射对纳米流体通过旋转拉伸片的MHD边界层流动的影响

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Viscous dissipation and radiative heat transfer in nanofluid with the influence of magnetic field over a rotating stretching surface has been investigated numerically. The steady laminar boundary layer flow is considered in this study. The governing boundary-layer equations are formulated and transformed into nonlinear ordinary coupled differential equations by using similarity variables. The governing equations are solved numerically using the Nactsheim-Swigert Shooting iteration technique together with the Runge-Kutta six order iteration schemes with the help of a computer programming language Compaq Visual Fortran 6.6a. The simulation results are presented graphically to illustrate influence of well-known parameters on the velocity, temperature and concentration distributions as well as skin-friction coefficient, Nusselt and Sherwood number at the sheet.
机译:数值研究了在旋转拉伸表面上磁场对纳米流体的粘性耗散和辐射传热。本研究考虑了稳定的层流边界层流动。利用相似变量,将控制边界层方程式公式化并转化为非线性常耦合微分方程式。在计算机编程语言Compaq Visual Fortran 6.6a的帮助下,使用Nactsheim-Swigert Shooting迭代技术和Runge-Kutta六阶迭代方案对控制方程进行数值求解。仿真结果以图形方式显示,以说明众所周知的参数对速度,温度和浓度分布以及表皮的摩擦系数,Nusselt和Sherwood数的影响。

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