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Activation energy and dual stratification effects for Walter-B fluid flow in view of Cattaneo-Christov double diffusionon

机译:从Cattaneo-Christov双重扩散的角度来看Walter-B流体流动的活化能和双重分层效应

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摘要

The purpose of the present article is to explore the novel aspects of activation energy in nonlinearly convective flow of Walter-B nanofluid in view of Cattaneo-Christov double diffusion model over a permeable stretched sheet. Generalized forms of Fourier's and Fick's law are utilized through Cattaneo-Christov double diffusion. Walter-B nanomaterial model is used that describes the significant slip mechanism namely Brownian and thermophoresis diffusions. Double stratification, heat generation/absorption and chemical reaction are considered. Modified Arrhenius formula for activation energy is implemented. The acquired nonlinear system is cracked through homotopic analysis method. Effects of emanating variables are examined through graphs and tables. It is evident that temperature distribution and thermal boundary layer thickness is monotonically dwindling function of thermal stratification parameter(P1), thermal relaxation time (δ2) and upsurge for the thermophoresis parameter (Nt), heat generation/absorption parameter (B₁), Brownian motion parameter (Nb). Nanoparticle concentration is directly comparable to the activation energy of reaction and impact of thermal relaxation time is qualitatively opposite to that of thermophoretic force.
机译:本文的目的是根据可渗透拉伸片材上的Cattaneo-Christov双重扩散模型,探索Walter-B纳米流体的非线性对流中活化能的新方面。傅立叶和菲克定律的广义形式通过Cattaneo-Christov双重扩散来利用。使用Walter-B纳米材料模型描述了重要的滑动机理,即布朗扩散和热泳扩散。考虑了双重分层,生热/吸收和化学反应。修改后的Arrhenius公式获得了活化能。通过同位分析法将获得的非线性系统分解。发出的变量的影响通过图形和表格进行检查。显然,温度分布和热边界层厚度是热分层参数的单调递减函数。 P 1 ,热弛豫时间 < mrow> δ 2 并提高热泳参数 N t ,生热/吸收参数(B₁),布朗运动参数 < mo Stretchy =“ true”>( N b 。纳米粒子的浓度可直接与反应的活化能相媲美,而热弛豫时间的影响与热泳力的影响在质量上相反。

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