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首页> 外文期刊>Energy >Energy conversion under conjugate conduction, magneto-convection, diffusion and nonlinear radiation over a non-linearly stretching sheet with slip and multiple convective boundary conditions
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Energy conversion under conjugate conduction, magneto-convection, diffusion and nonlinear radiation over a non-linearly stretching sheet with slip and multiple convective boundary conditions

机译:具有滑动和多对流边界条件的非线性拉伸片在共轭传导,磁对流,扩散和非线性辐射下的能量转换

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摘要

Energy conversion under conduction, convection, diffusion and radiation has been studied for MHD free convection heat transfer of a steady laminar boundary-layer flow past a moving permeable non-linearly extrusion stretching sheet. The nonlinear Rosseland thermal radiation flux model, velocity slip, thermal and mass convective boundary conditions are considered to obtain a model with fundamental applications to real world energy systems. The Navier slip, thermal and mass convective boundary conditions are taken into account. Similarity differential equations with corresponding boundary conditions for the flow problem, are derived, using a scaling group of transformation. The transformed model is shown to be controlled by magnetic field, conduction-convection, convection-diffusion, suction/injection, radiation-conduction, temperature ratio, Prandtl number, Lewis number, buoyancy ratio and velocity slip parameters. The transformed non-dimensional boundary value problem comprises a system of nonlinear ordinary differential equations and physically realistic boundary conditions, and is solved numerically using the efficient Runge-Kutta-Fehlberg fourth fifth order numerical method, available in Maple 17 symbolic software. Validation of results is achieved with previous simulations available in the published literature. The obtained results are displayed both in graphical and tabular form to exhibit the effect of the controlling parameters on the dimensionless velocity, temperature and concentration distributions. The current study has applications in high temperature materials processing utilizing magnetohydrodynamics, improved performance of MHD energy generator wall flows and also magnetic-microscale fluid devices. (C) 2016 Published by Elsevier Ltd.
机译:已经对传导,对流,扩散和辐射下的能量转换进行了研究,以了解通过运动的可渗透非线性挤压拉伸片材的稳定层流边界层流的MHD自由对流传热。考虑使用非线性Rosseland热辐射通量模型,速度滑移,热对流和质量对流边界条件,以获得具有在现实世界能源系统中的基本应用的模型。考虑了Navier滑动,热对流和质量对流边界条件。使用变换的缩放比例组,导出了具有相应边界条件的流动问题相似性微分方程。转换后的模型显示受磁场,传导-对流,对流-扩散,吸力/注入,辐射传导,温度比,普朗特数,路易斯数,浮力比和速度滑移参数控制。变换后的无量纲边值问题包括非线性常微分方程组和物理上现实的边界条件,并使用有效的Runge-Kutta-Fehlberg第四五阶数值方法(在Maple 17符号软件中可用)进行数值求解。结果的验证是通过以前发表的文献中提供的模拟来实现的。获得的结果以图形和表格形式显示,以显示控制参数对无量纲速度,温度和浓度分布的影响。当前的研究已在利用磁流体动力学的高温材料加工中得到了应用,提高了MHD能量发生器壁流的性能,以及磁微流体设备。 (C)2016由Elsevier Ltd.出版

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