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SEISMIC FRAGILITY ASSESSMENT OF STEEL LIQUID STORAGE TANKS

机译:钢制液体储罐的易碎性评估

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A seismic fragility assessment procedure is developed for atmospheric steel liquid storage tanks. Appropriate system and component-level damage states are defined by identifying the failure modes that may occur during a strong ground motion. Special attention is paid to the elephant's foot buckling failure mode, where the estimation of the associated capacity and demand requires thorough consideration within a probabilistic framework. A novel damage state is introduced to existing procedures with respect to the uncontrollable loss of containment scenario. Fragility curves are estimated by introducing both aleatory and epistemic sources of uncertainty, thus providing a comprehensive methodology for the seismic risk assessment of liquid storage tanks. The importance of dynamic buckling is acknowledged and the issue of non-sequential damage states is finally revealed.
机译:针对大气钢制液体储罐制定了地震易损性评估程序。通过识别在强地面运动过程中可能发生的故障模式,来定义适当的系统和组件级别的损坏状态。特别要注意大象的脚屈曲失败模式,在此模式下,需要在概率框架内全面考虑相关容量和需求的估计。关于无法控制的密闭性损失情况,将一种新的损坏状态引入到现有程序中。通过引入不确定性的不确定性和认识性来源来估计易碎性曲线,从而为液体储罐的地震风险评估提供了一种全面的方法。人们认识到动态屈曲的重要性,并最终揭示了非顺序损坏状态的问题。

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