Influence of magnetohydrodynamics and chemical reactions on oscillatory free convective flow through a vertical channel in a rotating system with variable permeability

被引:4
作者
Sharma, Pawan K. [1 ]
Sharma, Bhupendra K. [2 ]
Sharma, Madhu [3 ]
Almohsen, Bandar [4 ]
Laroze, David [5 ]
Saluja, Rajesh Kumar [6 ]
机构
[1] Amity Univ, Amity Inst Appl Sci, Amity Rd,Sect 125, Noida 201303, India
[2] Birla Inst Technol & Sci, Dept Math, Pilani, Rajasthan, India
[3] Bhartiya Inst Engn & Technol, Dept Appl Sci & Humanities, Sikar, Rajasthan, India
[4] King Saud Univ, Coll Sci, Dept Math, Riyadh 11451, Saudi Arabia
[5] Univ Tarapaca, Inst Alta Invest, Casilla 7D, Casilla, Arica, Chile
[6] Amity Univ, Amity Inst Aerosp Engn, Noida, Uttar Pradesh, India
来源
MODERN PHYSICS LETTERS B | 2025年 / 39卷 / 19期
关键词
MHD; porous medium; chemical reaction; heat transfer; MHD FREE-CONVECTION; HEAT-TRANSFER RESPONSE; POROUS-MEDIUM; MOVING PLATE; COUETTE-FLOW; SURFACE; NANOFLUID; DIFFUSION; RADIATION;
D O I
10.1142/S0217984925500502
中图分类号
O59 [应用物理学];
学科分类号
摘要
This study investigates the impact of variable permeability as well as chemical reactions on the oscillatory free convective flow that passes parallel porous flat plates with fluctuating temperature and concentration in the presence of a magnetic field. A vertical channel is assumed to be rotating at an angular velocity Omega. Periodic free stream velocity causes oscillations in one plate, while periodic suction velocity causes oscillations in the other plate. Complex variable notations are used to solve the governing equations. The perturbation technique is used to derive analytical expressions for the temperature, concentration, and velocity fields. In this study, various parameters were investigated in relation to mean velocity, mean temperature, mean concentration, amplitude, and phase difference. The study also examines the impact on secondary velocity, primary velocity, temperature, concentration, and heat transfer rate during transients. The outcomes are presented graphically for the physical parameters of the problem. The findings contribute to optimizing systems and improving efficiency in heat transfer, fluid dynamics, and environmental remediation.
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页数:22
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