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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Residence time of inertial particles in a vortex
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Residence time of inertial particles in a vortex

机译:惯性粒子在涡旋中的停留时间

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The residence time of a particle within a spatial domain is the total time it spends within this domain. We study the residence time of small dense particles in a spreading line vortex. Trajectories have been calculated for small dense particles released near a spreading line vortex. The results show that particles released far away from the vortex center will not be trapped by it, but particles released close to it will remain there for a considerable time. This residence time is shown to be a function of the particle inertia tau(p), its fall velocity V-T, and the vortex's Reynolds number Re-gamma. The results of simulations also show that there is an optimum vortex Reynolds number such that the residence time of the particle is maximized within this simulated spreading line vortex. These findings are expected to be applicable to the coupling between the small-scale turbulent flow structures and the motion of the suspended particles. [References: 25]
机译:粒子在空间域中的停留时间是其在该域中花费的总时间。我们研究了在扩散线涡旋中小的致密颗粒的停留时间。已经计算了在扩散线涡旋附近释放的小致密颗粒的轨迹。结果表明,远离涡流中心释放的粒子不会被其捕获,但是靠近涡流中心释放的粒子将在此保留相当长的时间。该停留时间显示为粒子惯性tau(p),其下降速度V-T和涡旋的雷诺数Re-gamma的函数。仿真结果还表明,存在最佳涡旋雷诺数,从而使粒子的停留时间在此模拟扩展线涡旋内最大化。这些发现有望适用于小规模湍流结构与悬浮颗粒运动之间的耦合。 [参考:25]

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