An analytical study of ohmic dissipation and diffusion-thermo effect on MHD convective flow through an infinite vertical porous plate with constant heat and mass flux

IF 2.6 Q2 THERMODYNAMICS Heat Transfer Pub Date : 2024-10-03 DOI:10.1002/htj.23201
Sweety Sharma, Kangkan Choudhury
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Abstract

This research examines the appearance of a two-dimensional steady flow movement of a viscous, incompressible fluid undergoing chemical reactions along an infinitely long vertical porous plate. The flow is influenced by a transverse magnetic field, with the plate experiencing a uniform suction velocity. The research novelty lies in inspecting the impacts of ohmic dissipation and diffusion-thermo effects while maintaining constant heat and mass flux and considering heat and mass transfer in the presence of thermal radiation. Using perturbation techniques, the foremost calculations are solved, and the results are presented both graphically and in tables. The analysis shows that higher values of the diffusion-thermo parameter upsurge fluid velocity and temperature, whereas the presence of the transverse magnetic field decreases fluid velocity and temperature.

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恒热恒质垂直多孔板中MHD对流的欧姆耗散和扩散热效应分析研究
本研究考察了粘性不可压缩流体沿无限长垂直多孔板发生化学反应的二维稳定流动运动的外观。流动受到横向磁场的影响,板经历均匀的吸力速度。研究的新颖之处在于在保持恒定的热量和质量通量的情况下考察欧姆耗散和扩散热效应的影响,并考虑热辐射存在下的传热传质。利用微扰技术,解决了最重要的计算问题,并以图表和表格的形式给出了结果。分析表明,扩散热参数的增大使流体速度和温度升高,而横向磁场的存在使流体速度和温度降低。
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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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