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Concentrations of inertial particles in the turbulent wake of an immobile sphere

机译:固定球的湍流中的惯性粒子浓度

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Direct numerical simulations are used to study the interaction of a stream of small heavy inertial particles with the laminar and turbulent wakes of an immobile sphere facing an incompressible uniform inflow. Particles that do not collide with the obstacle but move past it are found to form preferential concentrations both in the sphere boundary layer and in its wake. In the laminar case, the upstream diverging flow pattern is responsible for particle clustering on a cylinder that extends far downstream the sphere. The interior of this surface contains no particles and can be seen as a shadow of the large obstacle. Such concentration profiles are also present in the case of turbulent wakes but show a finite extension. The sphere shadow is followed by a region around the axis of symmetry where the concentration is higher than the average. It originates from a resonant centrifugal expulsion of particles from shed vortices. The consequence of this concentration mechanism on monodisperse inter-particle collisions is also briefly discussed. They are enhanced by both the increased concentration and the presence of large velocity differences between particles in the wake. (C) 2015 AIP Publishing LLC.
机译:直接数值模拟用于研究小惯性小颗粒流与面对不可压缩均匀流入的不动球体的层流和湍流尾流的相互作用。发现不会与障碍物碰撞但会越过障碍物的粒子在球体边界层及其尾部均会形成优先浓度。在层流情况下,上游的扩散流型导致颗粒聚集在圆柱体上,圆柱体向球体的下游延伸很远。该表面的内部不包含任何粒子,可以看作是大障碍物的阴影。在湍流尾流的情况下也存在这样的浓度分布,但是显示出有限的延伸。球形阴影后面是对称轴周围的区域,其中浓度高于平均值。它起源于从脱落的涡流中共振释放出颗粒。还简要讨论了这种集中机制对单分散粒子间碰撞的影响。尾流中增加的浓度以及粒子之间存在大的速度差异都增强了它们。 (C)2015 AIP Publishing LLC。

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