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GRID-FREE VORTEX METHODS FOR NATURAL CONVECTION IN TWO-DIMENSIONAL DOMAINS

机译:二维域自然对流的无网格涡方法

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Vortex methods for simulating natural convection of an ideal gas in unbounded two-dimensional domains are presented. In particular, the redistribution method for diffusion is extended to enable simulation of nonlinear diffusion of an ideal gas in isobaric conditions encountered in unbounded low-Mach number flows. We also address the problem of handling source terms in grid-free vortex methods and propose a fast, accurate, and physically motivated method for solving the associated inverse problems. Examples include generation of baroclinic vorticity in non-reacting buoyancy driven flows, and in addition, generation of internal energy and species in buoyant reacting flows. Accuracy and speed of the proposed algorithms for nonlinear diffusion and vorticity generation are investigated separately. Simulations of natural convection of a "thermal patch" for Grashof number ranging from to 1562.5 to 25000 are presented.
机译:提出了在无界二维域内模拟理想气体自然对流的涡旋方法。特别地,扩展了扩散的重新分布方法,以能够模拟在无界的低马赫数流中遇到的等压条件下理想气体的非线性扩散。我们还解决了在无网格涡旋方法中处理源项的问题,并提出了一种快速,准确且具有物理动机的方法来解决相关的逆问题。实例包括在非反应性浮力驱动流中产生斜压涡旋,以及在浮力反应流中产生内能和物质。分别研究了所提出的非线性扩散和涡旋产生算法的准确性和速度。给出了格拉斯霍夫数从1562.5到25000的“热补丁”自然对流的模拟。

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