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Vortex Cores of Inertial Particles

机译:惯性粒子的涡核

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摘要

The cores of massless, swirling particle motion are an indicator for vortex-like behavior in vector fields and to this end, a number of coreline extractors have been proposed in the literature. Though, many practical applications go beyond the study of the vector field. Instead, engineers seek to understand the behavior of inertial particles moving therein, for instance in sediment transport, helicopter brownout and pulverized coal combustion. In this paper, we present two strategies for the extraction of the corelines that inertial particles swirl around, which depend on particle density, particle diameter, fluid viscosity and gravity. The first is to deduce the local swirling behavior from the autonomous inertial motion ODE, which eventually reduces to a parallel vectors operation. For the second strategy, we use a particle density estimation to locate inertial attractors. With this, we are able to extract the cores of swirling inertial particle motion for both steady and unsteady 3D vector fields. We demonstrate our techniques in a number of benchmark data sets, and elaborate on the relation to traditional massless corelines.
机译:无质量,涡旋粒子运动的核心是矢量场中类似涡旋行为的指标,为此,文献中提出了许多核心提取器。但是,许多实际应用超出了矢量场的研究范围。相反,工程师试图了解惯性粒子在其中运动的行为,例如在泥沙输送,直升机电力不足和煤粉燃烧中。在本文中,我们提出了两种提取惯性粒子围绕其旋转的核心线的策略,这些策略取决于粒子密度,粒子直径,流体粘度和重力。首先是从自主惯性运动ODE推导局部涡旋行为,最终将其归结为并行矢量运算。对于第二种策略,我们使用粒子密度估计来定位惯性吸引子。这样,我们就可以提取稳定和非稳定3D矢量场的旋转惯性粒子运动的核心。我们在许多基准数据集中展示了我们的技术,并详细说明了与传统无质量核线的关系。

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