涡旋环混合两层密度分层流体的实验研究

Lile Cao, R. Ito, T. Degawa, Y. Matsuda, K. Takamure, T. Uchiyama
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引用次数: 1

摘要

实验研究了两层密度分层的水(上层)和氯化钠水溶液(下层)在密度界面和涡流环相互作用下的混合。由水组成的漩涡环从上层的一个孔向密度界面发射,之后它的运动,以及下层流体的行为,通过平面激光诱导荧光方法被可视化。表示密度界面上无量纲密度跳跃的阿特伍德数设为0.0055,涡流环的雷诺数Re在2050 ~ 3070之间变化。可视化实验表明,穿透密度界面的涡流环在下层流体中是弹跳的。此外,还阐明了反弹的上层流体通过诱导由下层流体组成的第二涡环将下层流体夹带到上层。因此,本研究揭示了Re对发射涡环引起的上下流体混合的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of Mixing of Two-Layer Density-Stratified Fluid by a Vortex Ring
This study experimentally investigates the mixing of a two-layer density-stratified fluid of water (upper layer) and aqueous sodium chloride (NaCl) solution (lower layer) induced by the interaction between a vortex ring and the density interface. The vortex ring, which consists of water, is launched from an orifice in the upper layer toward the density interface, after which its motion, along with the behavior of the lower fluid, is visualized through a planar laser-induced fluorescence method. The Atwood number that expresses the nondimensional density jump across the density interface is set at 0.0055, and the Reynolds number Re of the vortex ring is varied from 2050 to 3070. The visualization experiment clarifies that the vortex ring penetrating the density interface is bounced while collapsing in the lower fluid. Furthermore, it elucidates that the bounced upper fluid entrains the lower fluid into the upper layer by inducing a second vortex ring consisting of the lower fluid. Thus, this study reveals the effect of Re on the mixing of the upper and lower fluid induced by the launched vortex ring.
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