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ENHANCED SEISMIC FRAGILITY ANALYSIS OF UNANCHORED ABOVE-GROUND STEEL LIQUID STORAGE TANKS

机译:地上部钢液体储罐的增强抗震性分析

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Earthquake damage in recent decades has revealed that storage tanks are one of the most vulnerable components in petrochemical and oil processing plants. Damage to tanks commonly associated with losses of containment, and thus results in the overall damage to nearby areas. Many of existing steel storage tanks were designed with outdated analysis methods and with underestimated seismic loads; therefore, various types of failure may occur during a strong ground shaking. This paper aims to present an appropriate methodology for the component fragility evaluation of existing storage tanks in a process plant, which will support for the determination of the loss of containment in terms of the ground motion intensity measure and finally the quantitative risk analysis of the plant and its nearby areas. In this respect, an unanchored oil storage tank, which is ideally located in Sicily (Italy), is selected as a case study. The significance of modeling parameters of the tank is first investigated with a screening study, which is based on nonlinear static pushover analyses of the tank using the ABAQUS software. The study aims to enhance the understanding of which modeling parameters significantly affect the seismic response of the tank and to reduce the number of analyses in the fragility evaluation. The fragility curves are then developed based on a lumped-mass model that is calibrated from the static pushover analysis results. Sources of uncertainty, related to significant parameters previously identified, are considered in the fragility analysis using a sampling procedure to generate statistically significant samples of the model.
机译:近几十年来的地震破坏表明,储罐是石化和石油加工厂中最易损坏的组件之一。坦克的损坏通常与密闭性的丧失有关,从而导致对附近区域的整体损坏。现有的许多钢制储罐在设计时都采用了过时的分析方法,并且地震荷载被低估。因此,在强烈的地面震动过程中可能会发生各种类型的故障。本文旨在提出一种合适的方法,用于评估加工厂中现有储罐的组件易损性,这将支持根据地面运动强度测量确定密闭性损失,并最终对工厂进行定量风险分析及其附近地区。在这方面,案例研究选择了理想情况下位于意大利西西里岛的未锚定储油罐。首先通过筛选研究来研究油箱建模参数的重要性,该研究基于使用ABAQUS软件对油箱进行非线性静态推覆分析。这项研究旨在增进对哪些建模参数会显着影响储罐地震响应的了解,并减少易碎性评估中的分析次数。然后基于集总质量模型来开发脆性曲线,该模型是根据静态推覆分析结果进行校准的。在脆性分析中,使用抽样程序来考虑与先前确定的重要参数相关的不确定性来源,以生成模型的统计上重要的样本。

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