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Double Diffusive Natural Convection Flow Over a Wavy Surface Situated in a Non-absorbing Medium

机译:位于非吸收性介质中的波浪形表面上的双扩散自然对流

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摘要

This analysis discuss the influence of heat and mass transfer on natural convection boundary layer flow of thermally radiating wavy surface. To make the surface radiating; Stephan-Boltzmann law is used in the boundary conditions. Therefore, convection and thermal radiation interact simultaneously with the aid of Stephan-Boltzmann law and ultimately producing highly nonlinear boundary conditions. The governing coupled boundary layer equations are switched into suitable form by using primitive variable formulations over which two-point iterative finite difference scheme is applied to obtain the unknown quantities. Physical quantities like wall shear stress, rate of heat transfer and rate of mass transfer are expressed graphically by varying significant emerging parameters: surface radiation (R), radiative length parameter (ξ), buoyancy ratio parameter (N) and amplitude of the wavy surface (α). Comparison of numerical results is also done in tabular form with the earlier study of Siddiqa et al. (2013) in order to validate the results.
机译:该分析讨论了传热和传质对热辐射波浪形表面自然对流边界层流动的影响。使表面辐射;边界条件中使用了斯蒂芬-玻尔兹曼定律。因此,对流和热辐射在Stephan-Boltzmann定律的帮助下同时相互作用,最终产生高度非线性的边界条件。通过使用原始变量公式将控制耦合的边界层方程式转换为合适的形式,在该公式上应用了两点迭代有限差分方案以获得未知量。通过改变重要的新兴参数,以图形方式表示壁剪切应力,热传递速率和质量传递速率等物理量:表面辐射(R),辐射长度参数(ξ),浮力比参数(N)和波浪表面的振幅(α)。数值结果的比较也以表格形式与Siddiqa等人的早期研究进行了比较。 (2013年)以验证结果。

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