Joule heating effects on triple diffusive free convective MHD flow over a convective surface: A Lie-group transformation analysis

Ammara Islam, Zafar Mahmood, Umar Khan, Bilal Ali, Md Irfanul Haque Siddiqui
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Abstract

This work integrates the Boussinesq approximation and magnetohydrodynamic effects to investigate the dynamics of incompressible triple diffusive fluid flow along a linearly stretched surface. Novel insights are revealed by contrasting instances with opposing and helpful flows. The partial differential equations are symmetrically reduced using Lie-group transformations, which make the Runge–Kutta shooting technique easier to solve. The effects of concentration buoyancy ratio, magnetic parameter, concentration parameter, and Lewis number on temperature, velocity, and concentration profiles are explained through graphical displays. Our results show that in both flow situations, the velocity distribution is decelerated by the magnetic parameter, and the salt concentration distributions are similarly affected by buoyancy ratio factors. Additionally, a higher Lewis number is associated with lower mass and heat transfer rates in the opposing and assisting fluid.
对流表面上三重扩散自由对流 MHD 流的焦耳加热效应:李群变换分析
这项研究综合了布西内斯克近似和磁流体动力学效应,研究了不可压缩的三重扩散流体沿线性拉伸表面流动的动力学。通过对比对流和助流的实例,揭示了新的见解。偏微分方程利用李群变换进行对称还原,这使得 Runge-Kutta 射频技术更容易求解。浓度浮力比、磁参数、浓度参数和路易斯数对温度、速度和浓度剖面的影响通过图形显示进行了解释。我们的结果表明,在这两种流动情况下,速度分布受磁参数的影响而减速,盐浓度分布同样受浮力比因素的影响。此外,路易斯数越高,对流体和辅助流体的传质和传热速率越低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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