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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Vortex method with meshless spatial adaption for accurate simulation of viscous, unsteady vortical flows
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Vortex method with meshless spatial adaption for accurate simulation of viscous, unsteady vortical flows

机译:具有无丝石空间适应的涡流方法,用于精确模拟粘性,不稳定的涡流

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摘要

A vortex method has been developed where spatial adaption of the Lagrangian vortex particles is provided by the technique of radial basis function interpolation. In this way, the meshless formulation of the vortex method is preserved throughout. Viscous effects are provided by the core spreading method, where core size control is accomplished in the spatial adaption, thus ensuring convergence. Numerical experiments demonstrate considerable increase in accuracy, in comparison with standard remeshing schemes used with vortex methods. Proof-of-concept is achieved successfully on a problem of quasi-steady tripole vortex flow, and parallel implementation of the method has permitted high-accuracy computations of vortex interactions at high Reynolds number. Copyright (c) 2005 John Wiley A Sons, Ltd.
机译:已经开发了一种涡流法,其中拉格朗日涡流颗粒的空间适应由径向基函数插值技术提供。 以这种方式,涡旋法的无丝毫配方在整个中保存。 磁芯扩散方法提供粘性效果,其中核心尺寸控制在空间适应中完成,从而确保收敛。 与用涡旋方法使用的标准倒闭方案相比,数值实验表明准确性相当大的提高。 概念验证成功地实现了准稳定的超级涡旋流量的问题,并且该方法的并行实现允许在高雷诺数的高精度计算的涡流交互计算。 版权所有(c)2005 John Wiley A Sons,Ltd。

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