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The effect of earthquake frequency content on the seismic behavior of concrete rectangular liquid tanks using the finite element method incorporating soil-structure interaction

机译:土-结构相互作用有限元法分析地震频率含量对矩形矩形液罐抗震性能的影响

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A three-dimensional soil-structure-liquid interaction is numerically simulated using the finite element method in order to analyze the seismic behavior of partially filled concrete rectangular tanks subjected to different ground motions. In this paper, the effect of earthquake frequency content on the seismic behavior of fluid rectangular tank system is investigated using four different seismic motions. A simple model with viscous boundary is used to include deformable foundation effects as a linear elastic medium. This method is capable of considering both impulsive and convective responses of liquid-tank system. Six different soil types defined in the well-recognized seismic codes are considered. The sloshing behavior is simulated using linear free surface boundary condition. Two different finite element models corresponding with flexible shallow and tall tank configurations are studied under the effects of longitudinal, transversal and vertical ground motions. By means of changing the soil properties, comparisons are made on base shear, base moment and sloshing responses under different ground motions. It is concluded that the dynamic behavior of the fluid-tank-soil system is highly sensitive to frequency characteristics of the earthquake record.
机译:利用有限元方法对三维土-结构-液体的相互作用进行了数值模拟,以分析部分填充混凝土矩形罐在不同地震动作用下的抗震性能。本文利用四种不同的地震运动研究了地震频率含量对流体矩形罐系统地震行为的影响。一个带有粘性边界的简单模型被用来包括可变形的基础效应作为线性弹性介质。该方法能够同时考虑液罐系统的脉冲响应和对流响应。考虑了公认的地震规范中定义的六种不同的土壤类型。使用线性自由表面边界条件模拟晃荡行为。在纵向,横向和垂直地震动的影响下,研究了两种分别对应于柔性浅水箱和高水箱结构的有限元模型。通过改变土壤性质,对不同地面运动下的基础剪力,基础矩和晃荡响应进行了比较。结论是,流体-罐-土系统的动力特性对地震记录的频率特性高度敏感。

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