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Outlining the impact of melting on MHD Casson fluid flow past a stretching sheet in a porous medium with radiation

机译:概述了熔融对MHD Casson流体流过带有辐射的多孔介质中的拉伸片的影响

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摘要

This article focused on framing the features of melting heat transfer on magnetohydrodynamic (MHD) Casson fluid flow in a porous medium influenced by thermal radiation. The present model is employed to simulate the viscoelastic behavior of fluid in the porous regime. Firstly, the governing partial differential equations are converted into ordinary differential equations via suitable similarity transformation and then solved the developed nonlinear equations by using Runge-Kutta Fehlberg-45 order method. A detailed analysis of certain parameters on the velocity, temperature, skin friction coefficient, and reduced Nusselt number are illustrated and examined. The results indicate that enlargement in M and Ω decline velocity profile but an opposite trend for temperature. Furthermore, an increment in R and Me results in uphill Nusselt number. The results of the present analysis are compared with the available works in particular situations and more agreement has been observed.
机译:本文的重点是为受热辐射影响的多孔介质中的磁流体动力学(MHD)卡森流体流动上熔化传热的特征框架。本模型用于模拟多孔状态下流体的粘弹性行为。首先,将控制的偏微分方程通过适当的相似度变换转换为常微分方程,然后使用Runge-Kutta Fehlberg-45阶方法求解已开发的非线性方程。对速度,温度,皮肤摩擦系数和降低的Nusselt数的某些参数进行了详细分析,并进行了说明。结果表明 M Ω 下降速度曲线,但是温度相反的趋势。此外, < mi> R M e 会导致努塞尔特数上升。将本分析的结果与特定情况下的可用作品进行比较,并观察到更多的共识。

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