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首页> 外文期刊>International Journal of Heat and Mass Transfer >Network numerical analysis of radiation absorption and chemical effects on unsteady MHD free convection through a porous medium
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Network numerical analysis of radiation absorption and chemical effects on unsteady MHD free convection through a porous medium

机译:通过多孔介质对不稳定MHD自由对流的辐射吸收和化学作用的网络数值分析

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摘要

We investigate the unsteady hydro magnetic free convection by laminar flow of a Newtonian, viscous, electrically conducting and heat generation/absorbing fluid on a continuously vertical permeable surface in the presence radiation effect, chemical reaction and the mass flux. Numerical results were obtained using an efficient numerical method called: Network simulation method for several parameters, such as Prandtl number, Schmidt number, heat absorption coefficient, magnetic field parameter and permeability parameter. We have shown that a good agreement exists between the present results and those in the literature. Mainly it was found that increases in values of time, chemical reaction parameter, absorption radiation parameter, Schmidt number and permeability parameter were associated with increase in the velocity profile, while increases in heat generation parameter, Schmidt number, Prandtl number, magnetic field parameter and permeability parameter led to a decrease in the velocity profile. The results showed that increased the radiation absorption parameter and dimensionless time, led to a rise in the temperature profile, while increases in heat generation parameter and Prandtl number resulted in a decrease in the temperature distribution. Also, it was observed that increases in chemical reaction parameter led to a decrease in the concentration distribution, while decreases in Schmidt number were associated with increases in the concentration distribution.
机译:我们研究了存在辐射效应,化学反应和质量通量的连续垂直渗透表面上的牛顿,粘性,导电和生热/吸收流体的层流的非稳态水磁自由对流。使用称为:网络模拟方法的几个参数(例如Prandtl数,Schmidt数,吸热系数,磁场参数和磁导率参数)可获得数值结果。我们已经表明,目前的结果与文献中的结果之间存在良好的一致性。主要发现时间值,化学反应参数,吸收辐射参数,施密特数和渗透率参数的增加与速度分布的增加有关,而发热参数,施密特数,普兰特数,磁场参数和渗透率参数导致速度分布减小。结果表明,辐射吸收参数的增加和无量纲时间的增加,导致了温度分布的升高,而热量生成参数和普朗特数的增加导致了温度分布的减小。另外,观察到化学反应参数的增加导致浓度分布的降低,而施密特数的降低与浓度分布的增加相关。

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