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首页> 外文期刊>Mathematics and computers in simulation >Variable thermal conductivity and viscosity effects on non-Newtonian fluids flow through a vertical porous plate under Soret-Dufour influence
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Variable thermal conductivity and viscosity effects on non-Newtonian fluids flow through a vertical porous plate under Soret-Dufour influence

机译:在索雷特 - dufour影响下通过垂直多孔板流动的非牛顿流体的可变导热性和粘度效应

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摘要

The purpose of this paper is to consider heat and mass transfer processes on two non-Newtonian fluids (Walters-B viscoelastic and Casson fluid) situated in a hot environment. This study considered concentrated fruit juice and tomato sauce as the type of Casson fluid and polymethyl methacrylate, chromatography, and ceramic processing as the type of Walters-B viscoelastic fluids. The model is governed by systems of partial differential equations. These equations were simplified with the help of appropriate similarity variables to obtain nonlinear couple fourth-order ordinary differential equations. The transformed equations were solved numerically using the spectral homotopy analysis method (SHAM). SHAM is rooted in the homotopy analysis method (HAM) and the Chebyshev spectral collocation method. SHAM is efficient and converges faster than HAM. This paper is unique because it explored variable viscosity and thermal conductivity in the presence of flow parameters such as Soret, Dufour, radiation, viscous dissipation, magnetic field, and so on. The applied magnetic field serves as an opposition to the flow and thereby slows down the motion of an electrically conducting fluid. The influence of pertinent flow parameters is extensively discussed and presented graphically. The permeability parameter is noticed to decrease the velocity profile and increase the temperature profile. The present results were found to be in good agreement with existing works in literature.
机译:本文的目的是考虑位于热环境中的两个非牛顿流体(Walters-B粘弹性和鲫鱼液)上的热量和传质过程。本研究认为浓缩果汁和西红柿酱作为鲫鱼液和甲基丙烯酸甲酯,色谱法和陶瓷加工作为沃尔特斯-B粘弹性流体的类型。该模型由偏微分方程的系统管理。在适当的相似变量的帮助下简化了这些等式,以获得非线性耦合四阶常微分方程。使用光谱同型分析方法(假)在数值上进行了转换的等式。假植物源于同型分析方法(火腿)和Chebyshev谱搭配方法。假性高效并收敛于火腿。本文是独一无二的,因为它在存在的流动参数存在下探讨了可变粘度和导热性,例如Soret,Dufour,辐射,粘性耗散,磁场等。所施加的磁场用作流动的反对,从而减慢导电流体的运动。以图形方式广泛地讨论并呈现相关流量参数的影响。注意到渗透率参数可降低速度曲线并增加温度曲线。发现本结果与文学中现有的作品吻合良好。

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