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Numerical simulation for diffusion of matter in compound round jet by three-dimensional particle method

机译:三维粒子法在复合圆射流中物质扩散的数值模拟

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摘要

A three-dimensional particle method for the diffusion of matter in a round jet is proposed. The flow field is calculated with a vortex method, whereas the concentration field is simulated through a method analogous to the vortex method. The particle method is based on the Lagrangian approach; thus no computational grids are needed. It is applied to simulate the diffusion of matter in a compound round jet. The large-scale eddies, appearing just downstream of the disappearing point of the potential core, cause the diffusion of matter in the radial direction. In the subsequent developed region of the velocity field, the diffusion proceeds to the smaller vortical structure. The mean concentration and the concentration fluctuation intensity are in the self-preservation state at x/D greater than or equal to 8 and x/D greater than or equal to 13, respectively. These numerical results are favorably compared with experimental ones, indicating that the present particle method is usefully employed to simulate the diffusion of matter in a round jet. (C) 2004 Elsevier Ltd. All rights reserved.
机译:提出了一种在圆形射流中扩散物质的三维粒子方法。用涡旋法计算流场,而通过类似于涡旋法的方法模拟浓度场。粒子方法基于拉格朗日方法;因此,不需要计算网格。它用于模拟复合圆形射流中物质的扩散。刚好出现在势能核心消失点下游的大型涡旋导致物质沿径向扩散。在速度场的随后扩展区域中,扩散进行到较小的涡旋结构。平均浓度和浓度波动强度分别在x / D大于或等于8和x / D大于或等于13时处于自保存状态。这些数值结果与实验结果相吻合,表明本粒子方法可用于模拟圆形射流中物质的扩散。 (C)2004 Elsevier Ltd.保留所有权利。

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