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Topological evolution in compressible turbulent boundary layers

机译:可压缩湍流边界层的拓扑演化

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摘要

Topological evolution of compressible turbulent boundary layers at Mach 2 is investigated by means of statistical analysis of the invariants of the velocity gradient tensor based on the direct numerical simulation database. The probability density functions of the rate of change of the invariants exhibit the -3 power-law distribution in the region of large Lagrangian derivative of the invariants in the inner and outer layers. The topological evolution is studied by conditional mean trajectories for the evolution of the invariants. The trajectories illustrate inward-spiralling orbits around and converging to the origin of the space of invariants in the outer layer, while they are repelled by the vicinity of the origin and converge towards a limit cycle in the inner layer. The compressibility effect on the mean topological evolution is studied in terms of the ‘incompressible’, compressed and expanding regions. It is found that the mean evolution of flow topologies is altered by the compressibility. The evolution equations of the invariants are derived and the relevant dynamics of the mean topological evolution are analysed. The compressibility effect is mainly related to the pressure effect. The mutual-interaction terms among the invariants are the root of the clockwise spiral behaviour of the local flow topology in the space of invariants.
机译:通过基于直接数值模拟数据库的速度梯度张量不变式的统计分析,研究了2马赫可压缩湍流边界层的拓扑演化。不变量的变化率的概率密度函数在内层和外层中不变量的大拉格朗日导数区域中表现出-3幂律分布。通过条件均值轨迹研究不变量的演化拓扑。这些轨迹说明了外层不变空间周围并向内汇合的向内螺旋轨道,而它们却被原点附近所排斥并向内层的极限环汇合。根据“不可压缩”,压缩和扩展区域来研究可压缩性对平均拓扑演化的影响。发现可压缩性改变了流动拓扑的平均演变。推导了不变量的演化方程,并分析了平均拓扑演化的相关动力学。可压缩性效应主要与压力效应有关。不变量之间的互作用项是不变量空间中局部流动拓扑的顺时针螺旋行为的根。

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