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Seismic reliability of continuously supported steel wine storage tanks retrofitted with energy dissipation devices

机译:配备消能装置的连续支撑钢制储酒罐的抗震可靠性

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Seismic protection of wine storage tanks has become a very important issue due to the booming of the wine industry in seismic countries such as the US, Italy, New Zealand, Chile and Argentina. In order to improve the seismic reliabilities of structures, external energy dissipation may be used beneficially. In this study, the reliabilities of two continuously supported cylindrical steel tanks (one slender and one broad), used for fermentation and wine storage, with and without an external energy dissipation system are calculated by using simulation. A group of non-linear time history analyses is established in order to assess the influence of the energy dissipation system. Each non-linear time history is obtained by means of a mathematical model that considers the fluid-structure-soil interaction. A set of different seismic ground motions is used for the purpose of obtaining robust results in the reliability analysis. Finally, the seismic reliability analysis shows that, for steel wine storage tanks, an external energy dissipation system would reduce the limit state probability in the order of 80%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于诸如美国,意大利,新西兰,智利和阿根廷等地震国家的葡萄酒工业蓬勃发展,葡萄酒储罐的抗震保护已成为一个非常重要的问题。为了提高结构的地震可靠性,可以有利地使用外部能量消散。在这项研究中,通过模拟计算了用于发酵和葡萄酒储存的两个连续支撑的圆柱形钢罐(一个细长和一个宽)的可靠性,有和没有外部能量耗散系统。建立了一组非线性时程分析,以评估能量耗散系统的影响。每个非线性时间历史是通过考虑流体-结构-土壤相互作用的数学模型获得的。为了在可靠性分析中获得可靠的结果,使用了一组不同的地震地震动。最后,抗震可靠性分析表明,对于钢制葡萄酒储罐,外部能量耗散系统将使极限状态概率降低80%左右。 (C)2015 Elsevier Ltd.保留所有权利。

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