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首页> 外文期刊>Neural computing & applications >Numerical study of radiative Maxwell viscoelastic magnetized flow from a stretching permeable sheet with the Cattaneo-Christov heat flux model
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Numerical study of radiative Maxwell viscoelastic magnetized flow from a stretching permeable sheet with the Cattaneo-Christov heat flux model

机译:用Cattingo-Christov热通量模型从拉伸透水板辐射麦克风粘弹性磁化流动的数值研究

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摘要

In this article, the Cattaneo-Christov heat flux model is implemented to study non-Fourier heat and mass transfer in the magnetohydrodynamic flow of an upperconvected Maxwell fluid over a permeable stretching sheet under a transverse constant magnetic field. Thermal radiation and chemical reaction effects are also considered. The nonlinear partial differential conservation equations for mass, momentum, energy and species conservation are transformed with appropriate similarity variables into a system of coupled, highly nonlinear ordinary differential equations with appropriate boundary conditions. Numerical solutions have been presented for the influence of elasticity parameter (alpha), magnetic parameter (M-2), suction/injection parameter (lambda), Prandtl number (Pr), conduction-radiation parameter (R-d), sheet stretching parameter (A), Schmidt number (Sc), chemical reaction parameter (gamma(c)), modified Deborah number with respect to relaxation time of heat flux (i. e., non-Fourier Deborah number) on velocity components, temperature and concentration profiles using the successive Taylor series linearization method (STSLM) utilizing Chebyshev interpolating polynomials and Gauss-Lobatto collocation. The effects of selected parameters on skin friction coefficient, Nusselt number and Sherwood number are also presented with the help of tables. Verification of the STSLM solutions is achieved with existing published results demonstrating close agreement. Further validation of skin friction coefficient, Nusselt number and Sherwood number values computed with STSLM is included using Mathematica software shooting quadrature.
机译:在本文中,实施了Cattaneo-Christov热量模型,以研究在横向恒定磁场下的可渗透拉伸板上的上传动的麦克风流体的磁性流动流动中的非傅里叶热量和质量传递。还考虑了热辐射和化学反应效果。具有质量,动量,能量和物种保护的非线性偏差保护方程用适当的相似变量转化为具有适当边界条件的耦合的高度非线性常微分方程的系统。已经介绍了弹性参数(α),磁性参数(M-2),吸入/注入参数(Lambda),Prandtl号(Pr),传导参数(RD),薄片拉伸参数(a的影响)的数值解决方案),施密量(SC),化学反应参数(伽马(c)),改进的deborah编号相对于使用连续泰勒的速度分量,温度和浓度谱的热通量(即,非傅立叶差的数字)的弛豫时间。串联线性化方法(STSLM)利用Chebyshev内插多项式和高斯 - Lobatto搭配。在表格的帮助下还介绍了所选参数对皮肤摩擦系数,露珠数和舍伍德数的影响。现有发布结果验证STSLM解决方案的验证,展示了密切协议。使用Mathematica软件拍摄正交包括使用STSLM计算的皮肤摩擦系数,NUSERET号和Sherwood数值的进一步验证。

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