垂直板上双层非达克斯多孔介质自由对流中的可变导热性和质量扩散效应

Q3 Chemical Engineering
Suganthi R.K, B. Pullepu, supriya P, Shanmugapriya M, Pop I
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引用次数: 0

摘要

本文研究的是在具有可变质量扩散率和可变导热率的双层非达克斯多孔介质中的半无限等温垂直板上的不可压缩和非稳定自由对流。通过采用 Crank-Nicolson 类型的隐式有限差分方案计算了流动的非线性偏微分方程。研究了各种参数对浓度剖面、温度、速度以及舍伍德数、努塞尔特数和表皮摩擦力的影响,并以图表形式呈现。研究发现,在分层流体中,当达西数较高时,温度会明显下降。此外,研究还发现,分层现象在增加传质和传热速率的同时,也大大降低了皮肤摩擦力。当前结果与现有解决方案的比较结果完全一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variable thermal conductivity and mass diffusivity effects in a free convective flow of doubly stratified non-darcian porous medium over a vertical plate
The research in this article is carried out to study incompressible and unsteady free convective flow on a semi-infinite isothermal vertical plate in a doubly stratified non-Darcian porous media with variable mass diffusivity and variable thermal conductivity. The governing non-linear partial differential equations of flow were calculated by applying an implicit finite difference scheme of Crank-Nicolson type. Various parametric impacts on concentration profiles, temperature, velocity, as well Sherwood number, Nusselt number and skin friction, were examined and presented in graphs. It is examined that there exists a significant temperature decrease for high Darcy number in stratified fluids. Also, it is detected that the presence of stratification produces a considerable drop in skin friction while increases the mass and heat transfer rate. Comparison of current outcomes well agreed with the available solutions.
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来源期刊
International Journal of Applied Mechanics and Engineering
International Journal of Applied Mechanics and Engineering Engineering-Civil and Structural Engineering
CiteScore
1.50
自引率
0.00%
发文量
45
审稿时长
35 weeks
期刊介绍: INTERNATIONAL JOURNAL OF APPLIED MECHANICS AND ENGINEERING is an archival journal which aims to publish high quality original papers. These should encompass the best fundamental and applied science with an emphasis on their application to the highest engineering practice. The scope includes all aspects of science and engineering which have relevance to: biomechanics, elasticity, plasticity, vibrations, mechanics of structures, mechatronics, plates & shells, magnetohydrodynamics, rheology, thermodynamics, tribology, fluid dynamics.
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