Utilization of variable thermal conductivity and diffusion coefficient on non-Newtonian Prandtl model with modified heat and mass fluxes

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Muhammad Sohail, Syed Tehseen Abbas
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引用次数: 0

Abstract

PurposeThis study aims to analyze the Prandtl fluid flow in the presence of better mass diffusion and heat conduction models. By taking into account a linearly bidirectional stretchable sheet, flow is produced. Heat generation effect, thermal radiation, variable thermal conductivity, variable diffusion coefficient and Cattaneo–Christov double diffusion models are used to evaluate thermal and concentration diffusions.Design/methodology/approachThe governing partial differential equations (PDEs) have been made simpler using a boundary layer method. Strong nonlinear ordinary differential equations (ODEs) relate to appropriate non-dimensional similarity variables. The optimal homotopy analysis technique is used to develop solution.FindingsGraphs analyze the impact of many relevant factors on temperature and concentration. The physical parameters, such as mass and heat transfer rates at the wall and surface drag coefficients, are also displayed and explained.Originality/valueThe reported work discusses the contribution of generalized flux models to note their impact on heat and mass transport.
在具有修正热通量和质量通量的非牛顿普朗特模型上利用可变导热系数和扩散系数
目的 本研究旨在分析存在更好的质量扩散和热传导模型时的普朗特流体流动。通过考虑线性双向拉伸薄片,产生流动。热生成效应、热辐射、可变热导率、可变扩散系数和 Cattaneo-Christov 双扩散模型被用来评估热扩散和浓度扩散。强非线性常微分方程(ODE)与适当的非维相似变量相关。研究结果图表分析了许多相关因素对温度和浓度的影响。报告的工作讨论了广义通量模型的贡献,注意到它们对热量和质量传输的影响。
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来源期刊
CiteScore
3.70
自引率
5.00%
发文量
60
期刊介绍: Multidiscipline Modeling in Materials and Structures is published by Emerald Group Publishing Limited from 2010
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