The detrimental effect of thermal exposure and thermophoresis on MHD flow with combined mass and heat transmission employing permeability

Q3 Chemical Engineering
Ashik Hussain Mirza, Bamdeb Dey, R. Choudhury
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引用次数: 0

Abstract

We look at the viscous free-convective transitional magnetohydrodynamic thermal and mass flow over a plate that is always perforated and standing upright through permeable media while thermal radiation, a thermal source, and a chemical reaction are all going on. There is additional consideration for the Soret effect. The plate receives a normal application of a transversely consistent magnetic field. The magnetic Reynolds number is considerably lower considering the axial applied magnetic field instead of the induced magnetic field. The models that control mass, heat, and fluid flow are turned into two-dimensional shapes, and the answers are found by running numerical simulations using the MATLAB algorithm bvp4c. In realistic circumstances, the outcomes have been illustrated graphically. Several fluid properties have been found to have an impact on velocity, temperature, and concentration profiles. There is noticeable increase in velocity along with the growth of the permeability parameter and Soret number. Other dimensionless parameters have a significant impact on the fluid velocity. Likewise, the temperature profile diminishes as the radiation parameter has increased. The concentration distribution falls as the heat source parameter expands. Also, the analysis is encompassed in tabular form for the shearing stress, Nusselt number, and Sherwood number. The combined knowledge of heat and mass moving through viscous flows can be used to make a wide range of mechanisms and processes. These include biological reactors, therapeutic delivery systems, methods of splitting, aerodynamic aircraft design, and modeling for sustainability. It also optimizes automotive radiators and engine efficiency, and it improves cooling systems.
热暴露和热泳对采用透气性的组合传质传热多流体流动的不利影响
在热辐射、热源和化学反应同时进行的情况下,我们将研究始终穿孔且直立的板上通过可渗透介质的粘性自由对流过渡磁流体热流和质量流。还需要考虑索雷特效应。该板正常接受横向一致磁场的作用。考虑到轴向外加磁场而不是感应磁场,磁雷诺数要低得多。控制质量、热量和流体流动的模型被转换成二维形状,并通过使用 MATLAB 算法 bvp4c 进行数值模拟来找到答案。在现实环境中,结果以图表形式展示。研究发现,一些流体特性会对速度、温度和浓度分布产生影响。随着渗透率参数和索雷特数的增加,速度也明显增加。其他无量纲参数对流体速度也有显著影响。同样,温度分布也随着辐射参数的增加而减小。浓度分布随着热源参数的扩大而下降。此外,还以表格形式对剪应力、努塞尔特数和舍伍德数进行了分析。热量和质量在粘性流中移动的综合知识可用于制造各种机制和过程。其中包括生物反应器、治疗输送系统、分裂方法、空气动力飞机设计以及可持续发展建模。它还能优化汽车散热器和发动机效率,改善冷却系统。
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来源期刊
International Journal of Applied Mechanics and Engineering
International Journal of Applied Mechanics and Engineering Engineering-Civil and Structural Engineering
CiteScore
1.50
自引率
0.00%
发文量
45
审稿时长
35 weeks
期刊介绍: INTERNATIONAL JOURNAL OF APPLIED MECHANICS AND ENGINEERING is an archival journal which aims to publish high quality original papers. These should encompass the best fundamental and applied science with an emphasis on their application to the highest engineering practice. The scope includes all aspects of science and engineering which have relevance to: biomechanics, elasticity, plasticity, vibrations, mechanics of structures, mechatronics, plates & shells, magnetohydrodynamics, rheology, thermodynamics, tribology, fluid dynamics.
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