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Numerical analysis of time-dependent flow of viscous fluid due to a stretchable rotating disk with heat and mass transfer

机译:具有热量和传质由于可拉伸的旋转盘导致的粘性流体时间依赖性流动的数值分析

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In this paper we studied the time-dependent viscous fluid flow due to a rotating stretchable disk. Fluid filling porous medium. Darcy’s law is used for description of porous medium. Moreover, the effect of chemical reaction and heat generation/absorption are considered in concentration and temperature equations respectively. Governing PDE’s system is reduced to dimensionless form by appropriate parameters. Finite difference method is used to solve the dimensionless PDE’s system. Behaviors of pertinent variables on temperature, velocity, mass and heat transfer rates are shown through graphs. Obtained results guarantee that velocity decreases for porosity parameter. Temperature increases for higher Prandtl number and heat generation. Concentration decreases for larger Schmidt number and chemical reaction parameter.
机译:在本文中,我们研究了由于旋转拉伸盘引起的时间依赖性粘性流体。填充多孔介质。达西的法律用于多孔介质的描述。此外,化学反应和发热/吸收的效果分别考虑浓度和温度方程。管理PDE的系统通过适当的参数减少到无量纲形式。有限差分法用于解决无量纲PDE系统。通过图表显示了温度,速度,质量和传热速率相关变量的行为。获得的结果保证了孔隙率参数的速度降低。温度升高为更高的PRANDTL数量和发热。较大的施密量和化学反应参数浓度降低。

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