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首页> 外文期刊>Frontiers in Heat and Mass Transfer >ENTROPY GENERATION OF UNSTEADY RADIATIVE CASSON FLUID FLOW THROUGH POROUS MEDIUM OVER A PERMEABLE STRETCHING SURFACE WITH INCLINED MAGNETIC FIELD
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ENTROPY GENERATION OF UNSTEADY RADIATIVE CASSON FLUID FLOW THROUGH POROUS MEDIUM OVER A PERMEABLE STRETCHING SURFACE WITH INCLINED MAGNETIC FIELD

机译:倾斜磁场对渗透性渗流在多孔介质上穿过多孔介质的非稳态辐射卡森流体的熵生

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Present paper aims to investigate entropy generation of unsteady radiative Casson fluid flow through porous medium over a permeable stretching surface with inclined magnetic field. Time-dependent partial differential equations are transformed into non-linear ordinary differential equations using similarity transformations. These transformed equations are solved numerically by Runge–Kutta fourth-order with shooting technique. The effects of pertinent parameter such as magnetic field parameter, Casson fluid parameter, inclined angle of magnetic field parameter, Radiation parameter and Reynold number on the velocity, temperature and entropy profiles are presented graphically. Local Nusselt and local Sherwood number are also obtained and presented in tabulated form. 
机译:本文旨在研究在倾斜磁场的作用下,渗透性延伸表面上穿过多孔介质的非稳态辐射卡森流体的熵产生。使用相似性变换,将与时间有关的偏微分方程转换为非线性常微分方程。这些变换后的方程是用Runge–Kutta四阶射击技术数值求解的。用图形表示了诸如磁场参数,卡森流体参数,磁场参数倾斜角,辐射参数和雷诺数等相关参数对速度,温度和熵分布的影响。还可以获取本地Nusselt和本地Sherwood编号,并以表格形式显示。

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