热固对流边界条件下指数加速板非定常卡森流体流动的建模与分析

M. Endalew, S. Sarkar
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引用次数: 0

摘要

我们打算分析考虑热辐射对卡森流体随时间流动的影响,由于一个指数加速的倾斜表面,以及热和溶质对流边界条件。通过一组线性偏微分方程定义了控制各向同性不可压缩辐射卡森流体流动的基本方程,并利用拉普拉斯变换方法导出了精确解。基于得到的基本方程的解析解,用MATLAB软件以图形和表格的形式给出了数值结果。研究表明,热辐射的增加导致流体速度和温度分布的增加,包括热边界层和动量边界层厚度。最有趣的是,增加传质系数会导致物种浓度、速度分布和传质速率的增加。然而,随着板块倾角的增加,流体速度在板块附近减小。科学界将从这项工作中受益匪浅,因为这些发现可以作为使用数值方法解决完全非线性流动控制问题的基准解决方案。
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Modeling and Analysis of Unsteady Casson Fluid Flow due to an Exponentially Accelerating Plate with Thermal and Solutal Convective Boundary Conditions
We intend to analyze the consequence of considering thermal radiation on time-dependent flow of the Casson fluid due to an exponentially accelerated inclined surface along with thermal as well as solutal convective boundary conditions. Fundamental equations governing an isotropic incompressible radiative Casson fluid flow are defined through a set of linear partial differential equations, and exact solutions are derived by using the Laplace transform approach. The numerical findings, obtained using MATLAB software, are presented in graphical and tabular representations based on the obtained analytical solutions of the fundamental equations. This investigation shows that the increment in thermal radiation results in the increment in fluid velocity and temperature distribution including thermal and momentum boundary layer thicknesses. Most interestingly, increasing the mass transfer coefficient results in an increment in the species concentration, velocity profiles, and mass transfer rate. However, the fluid velocity diminishes near the plate upon the increase in plate inclination. The scientific community will benefit greatly from this work since the findings can serve as benchmark solutions using numerical approaches to solve fully nonlinear flow governing problems.
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