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A Numerical Analysis of Sloshing Fluid in 2D Tanks with Baffles

机译:带有挡板的二维储罐中晃荡流体的数值分析

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A tuned liquid damper (TLD) is one possible damping device of tall buildings under wind and earthquake excitations. A 2D tank with a vertically tank bottom-mounted baffle under horizontal excitation is studied in this work. The combination of time-independent finite difference method [1-3] and one-dimensional ghost cell approach was implemented to solve liquid sloshing in the baffled tank. The correlation between the movement of baffles and flow field due to liquid sloshing might to the clue to investigate the evolution of vortices around the baffle tip. We categorize the interaction process of vortices evolution into three phases: (1) Formation of separated shear layer and generation of vortices; (2) Formation of a vertical jet and shedding of vortices; (3) Interaction between shedding vortices and sloshing flow: the generation of snaky flow.
机译:调谐液体阻尼器(TLD)是高层建筑在风和地震激励下的一种可能的阻尼装置。在这项工作中,研究了在水平激励下带有竖直安装在底部的折流板的二维储罐。实现了与时间无关的有限差分法[1-3]和一维幻影单元方法的结合,以解决折流罐中的液体晃动问题。挡板运动与液体晃动引起的流场之间的相关性可能是研究挡板尖端周围涡流演变的线索。我们将涡旋演化的相互作用过程分为三个阶段:(1)分离剪切层的形成和涡旋的产生; (2)形成垂直射流并产生涡流; (3)旋涡和晃荡流之间的相互作用:弯曲流的产生。

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