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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >An estimation of a passive scalar variances using a one-particle Lagrangian transport and diffusion model
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An estimation of a passive scalar variances using a one-particle Lagrangian transport and diffusion model

机译:使用单粒子拉格朗日输运和扩散模型估算被动标量方差

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摘要

In this work the Lagrangian particle diffusion model (LPDM) is extended to include variances and covariances between different passive scalars. This is done by introducing an additional particle variable - the conditional average scalar concentration (CASC) over the particle's trajectory. In contrast to the particle's scalar concentration which is conserved, the CASC evolves in time. The model for the evolution equation is compatible with the Eulerian equation for the scalar variance and with the asymptotic behaviour of the particles' pair probability function. The model calculations are compared with the wind tunnel observations in the neutral boundary layer (Fackrell & Robins (1982) [22]), and with the measurements in decaying homogeneous grid turbulence (Warhaft (1984) [18]). Good agreement is obtained between observations and model predictions. The model is simple to use and can be applied to non-homogeneous turbulence.
机译:在这项工作中,拉格朗日粒子扩散模型(LPDM)被扩展为包括不同无源标量之间的方差和协方差。这是通过引入一个附加的粒子变量完成的-粒子轨迹上的条件平均标量浓度(CASC)。与守恒的粒子标量浓度相反,CASC随时间变化。演化方程的模型与标量方差的欧拉方程以及粒子对概率函数的渐近行为兼容。将模型计算与中性边界层的风洞观测结果进行比较(Fackrell&Robins(1982)[22]),并将其与衰减均匀网格湍流的测量结果进行比较(Warhaft(1984)[18])。观测值和模型预测之间取得了很好的一致性。该模型易于使用,可应用于非均匀湍流。

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