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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Newtonian heat and mass conditions impact in thermally radiated Maxwell nanofluid Darcy-Forchheimer flow with heat generation
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Newtonian heat and mass conditions impact in thermally radiated Maxwell nanofluid Darcy-Forchheimer flow with heat generation

机译:牛顿热和质量条件对产生热量的热辐射Maxwell纳米流体Darcy-Forchheimer流的影响

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Purpose This paper aims to elaborate the characteristics of magneto-Maxwell nanoliquid toward moving radiated surface. Flow analysis subject to Darcy-Forchheimer concept is studied. Newtonian heat/mass conditions and heat source aspects are taken into account for modeling. Apposite transformations are introduced for non-dimensionalization process. Design/methodology/approach Optimal homotopy analysis method is implemented to compute convergent solutions of nonlinear ordinary differential equations. Findings Temperature field increments when thermophoresis, heat generation and Brownian movement parameters are increased, whereas reverse situation is noticed for larger Prandtl number. The results also witness that concentration distribution has opposite characteristics for larger thermophoresis and Brownian movement parameters. Furthermore, the presented analysis reduces to traditional Darcy relation in the absence of local inertia coefficient. Originality/value As per the authors' knowledge, no such analysis has been yet reported.
机译:目的本文旨在阐述磁-麦克斯韦纳米液体对移动辐射表面的特性。研究了达西-福希海默概念的流动分析。建模时考虑了牛顿热/质量条件和热源方面。针对非尺寸化过程引入了适当的转换。设计/方法/方法采用最佳同伦分析方法来计算非线性常微分方程的收敛解。结果当增加热泳,生热和布朗运动参数时,温度场会增加,而较大的Prandtl数会出现相反的情况。结果还证明,对于较大的热泳和布朗运动参数,浓度分布具有相反的特征。此外,提出的分析在没有局部惯性系数的情况下简化为传统的达西关系。独创性/价值据作者所知,尚未报告此类分析。

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