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Equivalent mechanical model for seismic forces in combined tanks subjected to vertical earthquake excitation

机译:竖向地震激励作用下组合储罐地震力的等效力学模型

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摘要

Liquid-storage tanks with circular cross sections are commonly built with a combined vessel consisting of a truncated cone and a superimposed top cylindrical cap. Unlike cylindrical tanks, combined tanks are characterized by the inclination of the walls of the conical segment. As a result, compressive meridional stresses are induced in the shell by the hydrostatic pressure of the contained fluid and the hydrodynamic pressure associated with vertical ground excitation. The current paper aims at identifying the dynamic characteristics of liquid-filled combined tanks subjected to vertical ground excitation. Numerical analysis is conducted based on a coupled finite-boundary element formulation that accounts for the associated fluid-structure interaction. An equivalent model is developed to duplicate forces induced in liquid-filled combined vessels subjected to vertical base excitation. The proposed model accounts for the flexibility of the vessel walls. Meanwhile, the contained fluid is idealized as rigid and flexible components. The proposed equivalent model provides a simplified tool to predict seismically-induced forces in liquid-filled vessels subjected to vertical earthquake excitation.
机译:具有圆形横截面的储液罐通常由组合的容器建造,该容器由截锥形和叠置的顶部圆柱形盖组成。与圆柱形储罐不同,组合储罐的特征在于圆锥形段壁的倾斜度。结果,由于所含流体的静水压力和与垂直地面激励有关的流体动力压力,在壳体中产生了压缩子午线应力。本文旨在确定垂直地面激励下充液混合罐的动态特性。基于耦合的有限边界元公式进行了数值分析,该公式考虑了相关的流体-结构相互作用。建立了等效模型以复制在垂直基础激励下充液的组合容器中感应的力。提出的模型考虑了容器壁的柔性。同时,所包含的流体被理想化为刚性和柔性组件。拟议的等效模型提供了一种简化的工具,可以预测遭受垂直地震激励的注满液体的容器中的地震感应力。

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