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首页> 外文期刊>International Journal of Heat and Mass Transfer >Modification of SIMPLE algorithm to handle supercritical natural circulation in a loop
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Modification of SIMPLE algorithm to handle supercritical natural circulation in a loop

机译:修改SIMPLE算法以处理循环中的超临界自然循环

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The conventional SIMPLE algorithm for the pressure-velocity coupling has been adopted by many commercial CFD codes. Since it encounters convergence problem when it is used for numerical analysis of a two-dimensional unsteady natural convection flow in a rectangular cavity with zero-isothermal compressibility, the modification of SIMPLE algorithm has been proposed for such a fluid. In this paper, differences between solutions for a one dimensional natural circulation of a super-critical carbon dioxide in a loop with a horizontal heater and a horizontal cooler configuration obtained by using the conventional SIMPLE algorithm and the modified version of the algorithm are investigated. The modification of the algorithm includes updating the density at each time step based on its value at the previous time step to satisfy the mass conservation. The differences of the velocity and temperature are relatively small comparing with the two-dimensional natural convection case. As an example of utilizing the modified SIMPLE algorithm, characteristics of the unsteady natural circulation of super-critical carbon dioxide in a rectangular loop are revealed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:许多商业CFD代码已经采用了用于压力-速度耦合的常规SIMPLE算法。由于将其用于零等温可压缩性的矩形腔内二维非定常自然对流流动的数值分析时会遇到收敛问题,因此对这种流体提出了SIMPLE算法的改进。在本文中,研究了使用传统的SIMPLE算法和算法的改进版本获得的具有水平加热器和水平冷却器配置的超临界二氧化碳在一维自然循环回路中解的差异。该算法的修改包括根据前一时间步长的值在每个时间步长更新密度,以满足质量守恒。与二维自然对流情况相比,速度和温度的差异相对较小。以利用改进的SIMPLE算法为例,揭示了矩形回路中超临界二氧化碳的非稳态自然循环特性。 (C)2018 Elsevier Ltd.保留所有权利。

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