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Numerical study on air-core vortex: analysis of generation mechanism

机译:空心涡的数值研究:产生机理分析

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An air-core vortex can be formed wherever water drains or discharges from a container. In some cases, detached bubbles or a complete air core can develop and subsequently enter the downstream equipment causing performance loss or even damage. In the present study, a numerical study and a physical discussion are done on the water draining out of a tank in order to determine why air-core vortex generates and on which factors it depends. The same condition as in the existing experiment was simulated numerically and validated by comparing against it. Subsequently, the numerical simulations are developed to alter physical and geometrical factors, i.e., wall rotation and surface tension both for laminar and turbulent flow regimes. It is realized that the generation of the air core depends on the action of drain and not to the environmental elements such as the effect of the surrounding walls. In fact, these elements can produce or destruct the angular momentum which plays a vital role in process of air-core vortex generation. Meanwhile, the fluid particle moves toward the drain port, and its angular velocity increases that it makes a narrow zone in the water having larger axial velocity and angular velocity with a lower pressure compared to the surrounding water. This narrow zone is the key factor, and when it develops, the free surface deforms and the air core generates.
机译:每当水从容器中排出或排出时,都会形成空心涡。在某些情况下,可能会形成气泡或完整的空芯,然后进入下游设备,从而导致性能损失甚至损坏。在本研究中,对从水箱中排出的水进行了数值研究和物理讨论,以确定空心涡产生的原因以及它取决于哪些因素。数值模拟了与现有实验相同的条件,并通过与之对比进行了验证。随后,开发了数值模拟以改变物理和几何因素,即层流和湍流状态的壁旋转和表面张力。可以理解的是,空芯的产生取决于排水的作用,而不取决于环境因素,例如围墙的作用。实际上,这些元素会产生或破坏角动量,而角动量在空心涡的产生过程中起着至关重要的作用。同时,流体粒子向排出口移动,并且其角速度增大,从而与周围的水相比,在具有较低轴向压力和角速度且具有较低压力的水中形成狭窄区域。这个狭窄的区域是关键因素,并且当其发展时,自由表面会变形并产生空芯。

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