热分层和质量分层对多孔介质中壁温指数衰减和质量指数扩散的加速垂直板上 MHD 流动的影响

IF 2.8 Q2 THERMODYNAMICS Heat Transfer Pub Date : 2024-08-19 DOI:10.1002/htj.23152
Rakesh Rabha, Rudra Kanta Deka
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引用次数: 0

摘要

本研究分析了经过加速垂直板的磁流体的传热和传质问题,同时考虑了指数衰减的壁面温度和指数质量扩散以及热分层和质量分层问题。利用拉普拉斯变换法求解了控制方程,并通过 MATLAB 软件绘制了图表。在图表的帮助下,研究了两种分层对我们研究中涉及的各种参数的影响。图表用于显示各种参数对速度、温度、浓度、表皮摩擦、努塞尔特数和舍伍德数的影响。我们考虑了两种情况,即有分层和无分层,以研究热分层和质量分层的影响。通过评估热分层与无分层环境的结果,研究得出了一个重要结论。研究发现,在两种分层的共同作用下,水流会很快达到稳定状态。研究还发现,随着磁场参数的增加,速度会稳步降低。这项研究在理解工程和技术领域的流体流动方面有很多应用,如地球物理学、天体物理学和流体工程学难题。
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Thermal and mass stratification effects on MHD flow past an accelerated vertical plate with exponentially decaying wall temperature and exponential mass diffusion in porous medium

This study analyzes the heat and mass transfer of magnetohydrodynamic flow past an accelerated vertical plate along with exponentially decaying wall temperature and exponential mass diffusion, in which thermal and mass stratification was considered. The governing equations are solved by employing the Laplace transform method, and graphs are produced by implementing MATLAB software. The impacts of both stratifications on various parameters involved in our studies were investigated with the help of graphs. Graphs were used to display the effects of various parameters on velocity, temperature, concentration, skin friction, Nusselt number, and Sherwood number. We consider both the cases, that is, with and without stratification to study the effects of thermal and mass stratification. By evaluating the results of thermal stratification with an unstratified environment, the study comes to an important conclusion. It is seen that the Steady state is reached quickly with the combined effect of both stratifications. It is also discovered that the velocity steadily reduced as the magnetic field parameter increased. This research has many applications in understanding the fluid flow in engineering and technology fields, such as geophysics, astrophysics, and fluid engineering difficulties.

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来源期刊
Heat Transfer
Heat Transfer THERMODYNAMICS-
CiteScore
6.30
自引率
19.40%
发文量
342
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