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Reducing the seismic vulnerability of existing elevated silos by means of base isolation devices

机译:通过基础隔离装置减少现有高架筒仓的地震易损性

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Industrial silos are used for storing a huge range of different materials. In the last decades, many of these structures were damaged by natural events, among which the earthquakes were the most significant. Indeed, numerous industrial plants have been built in the territories with high seismicity risk. Most of these plants have been designed and built before the latest updates of the seismic design codes took place, hence their current seismic reliability is questionable. In order to avoid future economic, life safety and environmental troubles that can be caused by the collapse of these non-building structures, specific retrofitting solutions should be developed and implemented urgently. This paper shows the feasibility of the seismic isolation solution on a typical case study. Seismic vulnerability of an existing industrial steel silo system has been investigated, and a retrofitting solution has been proposed making use of the curved surface single sliding pendulum devices. Incremental dynamic analysis method has been used to compare the performance of the original and the retrofitted solutions. Structural benefits of the seismic isolation solution have been quantified in terms of inelastic deformations, base shear, inter-story drifts and isolator displacements. The seismic behaviour of the original and the retrofitted structure has been compared by means of fragility curves. (C) 2017 Elsevier Ltd. All rights reserved.
机译:工业筒仓用于存储各种不同的材料。在过去的几十年中,其中许多结构受到自然事件的破坏,其中地震最为严重。实际上,在该地区已建造了许多具有高地震危险性的工厂。这些工厂中的大多数都是在抗震设计规范的最新更新发生之前进行设计和建造的,因此它们目前的抗震可靠性值得怀疑。为了避免这些非建筑结构的倒塌可能导致未来的经济,生命安全和环境问题,应紧急开发和实施特定的改造解决方案。本文在一个典型案例中说明了隔震解决方案的可行性。已经研究了现有工业钢筒仓系统的地震易损性,并提出了使用曲面单滑动摆装置的改型解决方案。增量动态分析方法已用于比较原始解决方案和改造解决方案的性能。地震隔离解决方案的结构优势已经通过非弹性变形,基础剪力,层间位移和隔离器位移进行了量化。通过脆性曲线比较了原始结构和翻新结构的抗震性能。 (C)2017 Elsevier Ltd.保留所有权利。

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