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The effect of stable stratification on fluid particle dispersion

机译:稳定分层对流体颗粒分散的影响

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The dispersion of fluid particles in statistically stationary stably stratified turbulence is studied by means of direct numerical simulations. Due to anisotropy of the flow, horizontal and vertical dispersion show different behavior. Single-particle dispersion in horizontal direction is similar to that in isotropic turbulence for short times, but shows a long-time growth rate larger than ∝ t. In vertical direction three successive regimes can be identified: a classical t~2-regime, a plateau which scales as N~(-2) and a diffusion limit ∝ t. By forcing the flow and performing long-time simulations we were able to observe this last regime, which was predicted but not observed before in purely stratified forced turbulence. A model based on the assumed shape of the velocity autocorrelation function correctly predicts these three regimes. The vertical mean-squared separation of particle pairs shows two plateaus that are not present in isotropic turbulence. They can be linked with characteristics of the flow. Also here the diffusion limit is found.
机译:通过直接数值模拟研究了流体颗粒在统计上固定的稳定分层湍流的分散。由于流量的各向异性,水平和垂直分散显示出不同的行为。水平方向上的单粒子分散与短时间内的各向同性湍流相似,但显示大于αT的长时间生长速率。在垂直方向上,可以识别三个连续的制度:经典T〜2-制度,一个高原,其缩放为n〜(-2)和扩散极限αt。通过强制流动并执行长时间模拟,我们能够观察到这一最后的制度,该制度预测但在纯粹分层的强制湍流之前未观察到。基于Velocity自相关函数的假定形状的模型正确预测这三个制度。粒子对的垂直平均平衡分离显示了两种不存在于各向同性湍流的平稳。它们可以与流量的特征相关联。此处还发现了扩散限制。

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