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Impact of cross diffusion on MHD viscoelastic fluid flow past a melting surface with exponential heat source

机译:交叉扩散对MHD粘弹性流体通过指数热源流过熔融表面的影响

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Purpose - The purpose of this paper is to propose the knowledge of thermal transport of magneto hydrodynamic non-Newtonian fluid flow over a melting sheet in the presence of exponential heat source. Design/methodology/approach - The group of PDE is mutated as dimension free with the assistance of similarity transformations and these are highly nonlinear and coupled. The authors solved the coupled ODE's with the help of fourth-order Runge-Kutta based shooting technique. The impact of dimensionless sundry parameters on three usual distributions of the flow was analyzed and bestowed graphically. Along with them friction factor, heat and mass transfer rates have been assessed and represented with the aid of table. Findings - Results exhibited that all the flow fields (velocity, concentration and temperature) are decreasing functions of melting parameter. Also the presence of cross-diffusion highly affects the heat and mass transfer performance. Originality/value -- Present paper deals with the heat and mass transfer characteristics of magnetohydrodynamics flow of non-Newtonian fluids past a melting surface. The effect of exponential heat source is also considered. Moreover this is a new work in the field of heat transfer in non-Newtonian fluid flows.
机译:目的-本文的目的是提出在存在指数热源的情况下,磁流体动力非牛顿流体在熔融板上流动的热传递知识。设计/方法/方法-PDE组在相似性转换的帮助下无尺寸变异,并且高度非线性且耦合。作者借助基于四阶Runge-Kutta的射击技术解决了耦合的ODE。分析了无因次杂物参数对三种常见流量分布的影响,并以图形方式给出了影响。连同摩擦系数一起,对热量和传质速率进行了评估,并借助表格进行了表示。结果-结果表明,所有流场(速度,浓度和温度)都是熔融参数的递减函数。交叉扩散的存在也极大地影响了传热和传质性能。独创性/价值-本论文研究了非牛顿流体经过熔融表面后的磁流体动力学流动的传热和传质特性。还考虑了指数热源的影响。此外,这是非牛顿流体流动中传热领域的一项新工作。

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