Unsteady Magnetohydrodynamic (MHD) flow past an accelerated vertical plate in the presence of thermal radiation and chemical reaction

Abubakar Shehu, Ibrahim Danjuma Yale, Abdulazeez Mohammed Tanko Uchiri
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Abstract

A study on Magnetohydrodynamic (MHD) flow past an accelerated vertical plate with the effects of thermal radiation and chemical reaction has been carried out. The dimensionless governing equations are solved using Laplace transform technique. The solution for the velocity, temperature and concentration field are obtained and analyzed for the different physical parameters like thermal Grashof Number, Modified Grashof Number, permeability parameter, Prandtl Number, Radiation parameter, Schmidt Number, chemical reaction parameter and time. It is observed that the velocity profile increases with increasing parameters like, Sc, Gc, M, R and t and also decrease with the decreases Pr and Gr. the temperature profile shows the decrease with the decreasing in Pr and t. and increase in R. While the concentration profile shows the increase in alpha and decrease in Sc and t.
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在热辐射和化学反应的作用下,非定常磁流体动力学(MHD)流过加速垂直板
研究了在热辐射和化学反应作用下加速垂直板的磁流体动力学流动。采用拉普拉斯变换技术求解无量纲控制方程。对热格拉什夫数、修正格拉什夫数、磁导率参数、普朗特数、辐射参数、施密特数、化学反应参数和时间等不同物理参数,得到了速度场、温度场和浓度场的解,并进行了分析。速度分布随Sc、Gc、M、R、t等参数的增大而增大,随Pr、gr的减小而减小;温度分布随Pr、t的减小而减小,R的增大而增大;浓度分布随α增大而Sc、t的减小。
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