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An investigation of natural convection in a three dimensional square wavy channel

机译:三维方波通道自然对流研究

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Natural convection in a three dimensional wavy channel, which is composed of numerous two dimensional cross sections, is investigated numerically. The method of elliptic partial differential equations grid generation is adopted to construct a distribution of grids on each cross sectioa The distributions of the whole cross sections are piled up in sequence from the inlet to outlet to form a three dimensional channel. In order to solve a low speed compressible flow problem, the compressibility and viscosity of the working fluid are taken into consideration, and the non-reflecting boundaries at the inlet and outlet of the channel are held. The Bossinesq assumption is then no longer necessary. As well, the methods of the Roe scheme, preconditioning and dual time stepping matching the implicit LUSGS algorithm (Implicit Lower Upper symmetric Gauss-Seidel algorithm) are simultaneously used to solve governing equations. Effects of the Rayleigh number and the ratio of the amplitude to wave length on heat transfer rates of the channel are examined. Results of both this study and existing studies have good agreements.
机译:数值研究了由多个二维截面组成的三维波浪通道中的自然对流。采用椭圆偏微分方程网格生成方法,在每个横截面上构造网格分布。从入口到出口依次堆积整个横截面的分布,形成三维通道。为了解决低速可压缩流动问题,考虑了工作流体的可压缩性和粘度,并在通道的入口和出口处保持了非反射边界。这样就不再需要Bossinesq假设。同样,同时使用Roe方案,预处理和与隐式LUSGS算法(Implicit Lower Upper对称Gauss-Seidel算法)匹配的双重时间步长的方法来求解控制方程。研究了瑞利数和振幅与波长之比对通道传热速率的影响。这项研究和现有研究的结果都有很好的一致性。

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