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Finite Element Analysis of Chemical Reaction and Radiation Effects on Isothermal Vertical Oscillating Plate with Variable Mass Diffusion

机译:变质量扩散等温垂直振动板化学反应和辐射效应的有限元分析。

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The objective of this paper is to investigate an unsteady flow of a viscous incompressible flow past an infinite isothermal vertical oscillating plate, in the presence of thermal radiation and chemical reaction. The fluid considered here is a gray, absorbing-emitting radiation but a nonscattering medium. The plate temperature is arised toTw, and the concentration level near the plate is raised linearly with respect to time. An exact solution to the dimensionless governing equations has been obtained by the finite element method, when the plate is oscillating harmonically in its own plane. The effects of velocity, temperature, and concentration are studied for different physical parameters like thermal Grashof number, mass Grashof number, radiation parameter, prandtl number, chemical reaction parameter, Schmidt number, phase angle, and time are studied graphically. The skin-friction coefficient, the Nusselt number, and the Sherwood number at the plate are discussed, and their numerical values for various values of physical parameters are presented through tables.
机译:本文的目的是研究在存在热辐射和化学反应的情况下,通过无限等温垂直振荡板的粘性不可压缩流的非稳态流动。这里考虑的流体是一种灰色的,吸收辐射的辐射,但不是散射介质。板温度升高到Tw,并且板附近的浓度水平相对于时间线性增加。当板在其自身平面中发生谐波振荡时,通过有限元方法可以获得无量纲控制方程的精确解。研究了不同物理参数对速度,温度和浓度的影响,如热格拉斯霍夫数,质量格拉斯霍夫数,辐射参数,普朗特数,化学反应参数,施密特数,相角和时间。讨论了板上的皮肤摩擦系数,努塞尔数和舍伍德数,并通过表格列出了它们的各种物理参数值的数值。

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