论文标题

圆锥形对象背后涡流环的通用翻译速度

Universal translational velocity of vortex rings behind conical objects

论文作者

de Guyon, Guillaume, Mulleners, Karen

论文摘要

环涡流在运输流体方面有效。它们通常是通过通过圆形孔射出大量流体来产生的。给出涡流环的冲动会导致发电机的推进力。推进性涡流环已得到广泛研究和表征。在四个对流时间之后,涡流移动的速度比其起源并分离的剪切层快。这种分离对应于循环中的最大值和涡度的最大扩展,并通过非量纲能量量化。这三个事件的同时使它们之间的因果关系混淆了。为了分析与分离无关的环涡流的非尺寸能量的时间演化,我们分析了锥后产生的涡旋的发展。将具有不同孔径和直径的锥体从静止中加速,以产生各种涡旋环,其能量,循环和速度是根据时间分辨的速度场测量提取的。锥体后面形成的环具有自我诱导的速度,使它们遵循锥体,并且随着圆锥体的行进远远超出了限制性涡流形成时间的尺度,它们继续生长。基于涡旋直径的非二维循环,在三个对流时间之后,阻力涡流环的非二维能汇聚成与它们的推进对应物相当的值。该结果证明,涡流捏合不会导致非二维能达到最低值。非二维循环和能量的限制值主要独立于锥几何和翻译速度,并且在平均值围绕10%的间隔内。只有6%的变异,涡旋的速度是控制锥体后面涡旋环形成的最统一数量。

Ring vortices are efficient at transporting fluid. They are often produced by ejecting a volume of fluid through a circular orifice. The impulse given to the vortex rings results in a propulsive force on the generator. Propulsive vortex rings have been widely studied and characterised. After four convective times, the vortex moves faster than the shear layer it originates from, and separates. This separation corresponds to a maximum in circulation and a maximal spread of the vorticity, quantified by the non-dimensional energy. The simultaneity of these three events obfuscates the causality between them. To analyse the temporal evolution of the non-dimensional energy of ring vortices independent of their separation, we analyse the development of vortices generated in the wake of cones. Cones with different apertures and diameters were accelerated from rest to produce a wide variety of vortex rings and their energy, circulation, and velocity were extracted based on time-resolved velocity field measurements. The rings that form behind the cones have a self-induced velocity that causes them to follow the cone and they continue to grow as the cone travels well beyond the limiting vortex formation times scales observed for propulsive vortices. The non-dimensional circulation, based on the vortex diameter, and the non-dimensional energy of the drag vortex rings converge after three convective times to values comparable to their propulsive counterparts. This result proves that vortex pinch-off does not cause the non-dimensional energy to reach a minimum value. The limiting values of the non-dimensional circulation and energy are mostly independent of the cone geometry and translational velocity and fall within an interval of 10% around the mean value. With only 6% of variation, the velocity of the vortex is the most unifying quantity that governs the formation of vortex rings behind cones.

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