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Dynamic response of structure coupled with liquid sloshing in a laminated composite cylindrical tank with baffle

机译:带有隔板的叠层复合圆柱罐中结构与液体晃荡的动力响应

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摘要

Baffles are used effectively to reduce the sloshing response of liquid in the liquid storage containers. In this paper, the dynamic interaction that exists between the liquid and elastic tank-baffle system has been considered to evaluate the coupled response of liquid and tank-baffle system using the finite element method. The baffle and tank wall are made up of lightweight laminated composite materials. The liquid is assumed to be incompressible and inviscid, and the flow is irrotational. The finite element equations of motion of liquid and structure domains are numerically integrated by Newmark's integration scheme. The interaction effect between the two fields is studied by transferring the structural normal acceleration to the liquid domain and liquid pressure to the structure domain. Effects of different parameters, such as being composite baffles, lamination scheme on the slosh frequencies and coupled vibration frequencies in the liquid filled composite tanks have been studied. The effects of composite baffle parameters, such as being its dimensions and position in the tank wall, on the sloshing response of liquid and structural response of liquid filled composite tank are studied under translational base excitation.
机译:挡板有效地用于减少液体在储液容器中的晃动响应。在本文中,考虑了液体与弹性箱体挡板系统之间存在的动力相互作用,以利用有限元方法评估液体与箱体挡板系统的耦合响应。挡板和罐壁由轻质层压复合材料制成。假定液体是不可压缩和不粘稠的,并且流动是不旋转的。液体和结构域运动的有限元方程通过纽马克积分方案进行数值积分。通过将结构法向加速度传递到液域,将液体压力传递到结构域,研究了两个场之间的相互作用效应。研究了复合挡板等不同参数对充液复合罐内晃荡频率和耦合振动频率的影响。在平移基座激励下,研究了复合挡板参数的大小和位置在罐壁中的变化对液体的晃动响应和充液复合罐结构响应的影响。

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