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Initial condition effects on large scale structure in numerical simulations of plane mixing layers

机译:平面混合层数值模拟中初始条件对大型结构的影响

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摘要

In this paper, Large Eddy Simulations are performed on the spatially developing plane turbulent mixing layer. The simulated mixing layers originate from initially laminar conditions. The focus of this research is on the effect of the nature of the imposed fluctuations on the large-scale spanwise and streamwise structures in the flow. Two simulations are performed; one with low-level three-dimensional inflow fluctuations obtained from pseudo-random numbers, the other with physically correlated fluctuations of the same magnitude obtained from an inflow generation technique. Where white-noise fluctuations provide the inflow disturbances, no spatially stationary streamwise vortex structure is observed, and the large-scale spanwise turbulent vortical structures grow continuously and linearly. These structures are observed to have a three-dimensional internal geometry with branches and dislocations. Where physically correlated provide the inflow disturbances a "streaky" streamwise structure that is spatially stationary is observed, with the large-scale turbulent vortical structures growing with the square-root of time. These large-scale structures are quasi-two-dimensional, on top of which the secondary structure rides. The simulation results are discussed in the context of the varying interpretations of mixing layer growth that have been postulated. Recommendations are made concerning the data required from experiments in order to produce accurate numerical simulation recreations of real flows. (C) 2016 AIP Publishing LLC.
机译:在本文中,在空间展开的平面湍流混合层上进行了大涡模拟。模拟的混合层源自最初的层流条件。这项研究的重点是施加的涨落的性质对流中大范围的展向和流向结构的影响。进行了两个模拟;一个具有从伪随机数获得的低级三维流入波动,另一个具有通过流入生成技术获得的具有相同量级的物理相关波动。在白噪声起伏提供流入扰动的地方,没有观察到空间上固定的沿流方向的涡旋结构,并且大规模的展向方向的湍流涡旋结构连续且线性地生长。观察到这些结构具有带有分支和位错的三维内部几何形状。在物理上相关的输入扰动的情况下,观察到了在空间上是静止的“条纹”的沿河方向的结构,随着时间的平方根增长了大规模的湍流涡旋结构。这些大型结构是准二维的,次级结构位于其上。在假设混合层生长的各种解释的背景下讨论了模拟结果。提出了有关实验所需数据的建议,以便产生真实流量的精确数值模拟。 (C)2016 AIP出版有限责任公司。

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