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Influence of Various Internal Components on Slosh Dynamics: A Study Using Finite Element Method

机译:各种内部组件对晃荡动力学的影响:使用有限元方法的研究

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摘要

The dynamic behavior of liquids in moving containers is a fascinating subject that has attracted the attention of geophysicists, seismologists, engineers, mathematicians and other scientific workers for many years. One of the design issues of the liquid-tank system is the sloshing phenomenon where internal fluid may result in severe damage to the containment system. The slosh dynamics of liquid storage tanks can be strongly influenced by the presence of internal submerged components. The internal components can modify the dynamic characteristics of the liquid tank systems to an advantage. The use of baffles as anti-slosh device is a quite well known example. The baffles cause a variation in the fundamental frequency of liquid oscillations by effectively changing the tank geometry. This paper describes the numerical assessment of lateral sloshing forces developed within liquid filled tanks with various internal components. The main contribution in this paper is that how the slosh dynamics of liquid filled container gets affected due to presence of multiple submerged block and baffle over a partition wall which is still dearth in open literature.
机译:移动容器中液体的动态行为是一个引人入胜的主题,多年来吸引了地球物理学家,地震学家,工程师,数学家和其他科学工作者的关注。液体储罐系统的设计问题之一是晃动现象,其中内部流体可能对安全壳系统造成严重损坏。内部浸没部件的存在会严重影响液体储罐的晃动。内部组件可以改变液罐系统的动态特性,从而带来优势。使用挡板作为防晃动装置是众所周知的例子。挡板通过有效地改变储罐的几何形状,导致液体振荡的基本频率发生变化。本文描述了在带有各种内部组件的充液罐内产生的横向晃荡力的数值评估。本文的主要贡献在于,充满液体的容器的晃动动力学是如何由于分隔壁上存在多个浸没的块和挡板而受到影响的,这在公开文献中仍然很缺乏。

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