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THE INTERACTIVE DYNAMIC BEHAVIOUR OF AN AIR-LIQUID-ELASTIC SPHERICAL TANK SYSTEM

机译:气-液-弹性球罐系统的相互作用动力学行为

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摘要

The dynamic behaviour of an air-liquid-elastic spherical tank interaction system is investigated. The tank is fully filled with a non-viscous liquid and air and supported at four equally spaced persitions around the outer shell. The governing equations describing this system are presented. A mixed displacement-pressure finite element method is developed adopting the dynamic pressure in the liquid / air and the displacement in the elastic solid as variables to initiate a numerical model incorporating a substructure-subdomain approach. Numerical simulations are presented based on a developed computer program FSIAP. The natural sloshing frequencies and the corresponding vibration modes of the coupled system are derived. To reveal different interactive mechanisms, four cases are investigated. Namely, 1) liquid sloshing in a rigid tank; 2) air-liquid interactions in a rigid tank; 3) liquid-elastic tank interactions; 4) three phase air-liquid-tank interactions. The numerical results obtained demonstrate the complex coupled behaviour of the system. This study provides information for the design of liquid / gas filled tanks in which structure sloshing behavious is of interest.
机译:研究了气-液-弹性球罐相互作用系统的动力学行为。储罐中充满了非粘性液体和空气,并在外壳周围四个等间隔的位置处得到支撑。给出了描述该系统的控制方程。以液体/空气中的动压力和弹性固体中的位移为变量,建立了混合位移-压力有限元方法,建立了包含子结构-子域方法的数值模型。基于已开发的计算机程序FSIAP进行了数值模拟。推导了耦合系统的自然晃动频率和相应的振动模式。为了揭示不同的交互机制,研究了四种情况。即,1)在刚性罐中的液体晃动; 2)刚性罐中的气液相互作用; 3)液弹罐的相互作用; 4)三相气-液-罐相互作用。获得的数值结果证明了系统的复杂耦合行为。这项研究为液体/气体填充罐的设计提供了信息,在这些罐中,结构晃荡行为是令人关注的。

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