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Seismic risk assessment of liquid overtopping in a steel storage tank equipped with a single deck floating roof

机译:钢铁储罐液体的地震风险评估,配备单甲板浮屋顶

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Major earthquakes have demonstrated that Natech events can be triggered by liquid overtopping in liquid storage tanks equipped with floating roofs. Thus, research on the dynamic behaviour of steel storage tanks with floating roofs is still required. In this paper, the seismic risk against liquid overtopping in a real steel storage tank with a floating roof was analysed using a simplified model that was validated by a refined finite element model based on the arbitrary Lagrangian-Eulerian approach. The simplified model utilizes the Lagrangian of a floating roof-fluid system and is capable of providing a response history of the floating roof. It was demonstrated that it could predict the maximum vertical displacement very accurately, while some differences were observed in the response history of vertical displacement. The computational time for a single response history analysis based on the simplified model amounted to a few minutes, which is significantly less demanding compared to hours required for response history analysis in the case of the refined FE model. The simplified model is thus appropriate for the seismic fragility analysis considering the overtopping limit state. It is shown that the fragility curves are significantly affected by the liquid filling level. The risk for liquid overtopping is quite high in the case of a full tank. However, by considering the variation of filling level during the year, the overtopping risk was observed reduced by approximately 30%. Alternatively, the approximate fragility analysis for the liquid overtopping can be performed by utilizing the Eurocode formula for the vertical displacement of liquid. This approach is straightforward, but the formula does not account for the higher mode effects, which may result in overestimated seismic intensity causing overtopping, as discussed in the paper.
机译:主要地震已经证明了Natech事件可以通过液体储罐的液体磨损,液体储存罐引发。因此,仍然需要对钢储罐的动态行为的研究仍然需要。在本文中,使用基于任意拉格朗日 - 欧拉 - 欧拉方向的精制有限元模型验证的简化模型,分析了浮动屋顶的液体液体液体的地震风险。简化模型利用浮动屋顶流体系统的拉格朗日,能够提供浮屋屋顶的响应历史。已经证明它可以非常准确地预测最大垂直位移,而在垂直位移的响应历史中观察到一些差异。基于简化模型的单次响应历史分析的计算时间为几分钟,而在精炼FE模型的情况下与响应历史分析所需的小时相比,这显着较低。因此,简化的模型考虑到概述限制状态的地震脆弱性分析。结果表明,脆性曲线受液体填充水平的显着影响。在全坦克的情况下,液体过度运行的风险非常高。但是,通过考虑年内填充水平的变化,观察到概述风险降低约30%。或者,可以通过利用诸如垂直位移的垂直位移来执行液体熵的近似脆弱性分析。这种方法很简单,但公式不考虑更高的模式效应,这可能导致纸张中讨论的造成高估的抗震性强度。

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