Fluid-structure-soil interaction effect on dynamic behaviour of circular water tanks

A. Joseph, G. Joseph
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Abstract

To investigate the seismic behaviour of concrete tanks on different soil conditions, fluid-structure-soil interaction system is simulated using finite element analysis software ANSYS. The influence of soil properties on tank's dynamic behaviour is studied by performing modal and transient analyses of cylindrical tanks resting on different soil conditions. Considering four different soil properties, comparisons are made on response parameters such as displacement in radial direction at top of tank wall, maximum hoop force, bending moment and base shear. The effect of frequency content of earthquake on seismic behaviour circular concrete tank is investigated by conducting time history analyses of the tanks under three different earthquakes. All the analyses were performed for half fill and full fill condition. Transient analyses show that the soil property, frequency content of earthquake and water fill condition have significant effect on seismic response of the water tanks.
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流固土相互作用对圆形水箱动力性能的影响
为了研究混凝土储罐在不同土壤条件下的抗震性能,利用有限元分析软件ANSYS对流体-结构-土壤相互作用系统进行了模拟。通过对不同土壤条件下的圆柱形储罐进行模态和瞬态分析,研究了土壤性质对储罐动态性能的影响。考虑到四种不同的土壤性质,对罐壁顶部径向位移、最大环向力、弯矩和基底剪力等响应参数进行了比较。通过对圆形混凝土储罐在三次不同地震作用下的时程分析,研究了地震频率对储罐抗震性能的影响。所有分析均针对半填充和全填充条件进行。瞬态分析表明,土体性质、地震频率和蓄水条件对水箱的地震反应有显著影响。
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来源期刊
International Journal of Structural Engineering
International Journal of Structural Engineering Engineering-Civil and Structural Engineering
CiteScore
2.40
自引率
23.10%
发文量
24
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