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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Circulation Generation and Vortex Ring Formation by Conic Nozzles
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Circulation Generation and Vortex Ring Formation by Conic Nozzles

机译:圆锥形喷嘴产生循环并形成涡旋环

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摘要

Vortex rings are one of the fundamental flow structures in nature. In this paper, the generation of circulation and vortex rings by a vortex generator with a static converging conic nozzle exit is studied numerically. Conic nozzles can manipulate circulation and other flow invariants by accelerating the flow, increasing the Reynolds number, and by establishing a two-dimensional flow at the exit. The increase in the circulation efflux is accompanied by an increase in the vortex circulation. A novel normalization method is suggested to differentiate between two contributions to the circulation generation: a one-dimensional slug-type flow contribution and an inherently two-dimensional flow contribution. The one-dimensional contribution to the circulation increases with the square of the centerline exit velocity, while the two-dimensional contribution increases linearly with the decrease in the exit diameter. The two-dimensional flow contribution to the circulation production is not limited to the impulsive initiation of the flow only (as in straight tube vortex generators), but it persists during the entire ejection. The two-dimensional contribution can reach as much as 44percent of the total circulation (in the case of an orifice). The present study offers evidences on the importance of the vortex generator geometry, and in particular, the exit configuration on the emerging flow, circulation generation, and vortex ring formation. It is shown that both total and vortex ring circulations can be controlled to some extent by the shape of the exit nozzle.
机译:涡环是自然界中最基本的流动结构之一。本文研究了具有静态会聚圆锥形喷嘴出口的涡流发生器对环流和涡流环的影响。圆锥形喷嘴可以通过加速流动,增加雷诺数以及在出口处建立二维流动来控制循环和其他流动不变性。循环外流的增加伴随着涡流循环的增加。提出了一种新颖的归一化方法来区分对循环产生的两个贡献:一维团状流贡献和固有的二维流贡献。对循环的一维贡献与中心线出口速度的平方成正比,而对二维循环的贡献随出口直径的减小而线性增加。对循环产生的二维流动贡献不仅限于流动的脉冲启动(如在直管涡流发生器中一样),而是在整个喷射过程中持续存在。二维贡献可以达到总循环量的44%(对于节流孔而言)。本研究提供了关于涡流发生器几何形状的重要性的证据,尤其是新兴流,循环产生和涡流环形成的出口构造。结果表明,出口环的形状可以在一定程度上控制总环流和涡流环的循环。

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