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PERFORMANCE BASED EARTHQUAKE ASSESSMENT OF AN INDUSTRIAL SILOS STRUCTURE AND RETROFIT WITH SLIDING ISOLATORS

机译:基于性能的工业筒仓结构地震评估和滑动隔离器的改造

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摘要

Recent seismic events pointed out the high vulnerability of existing industrial facilities, stressing on safety and high losses inherent to interruption of economic activities and release of environmentally hazardous materials. These structures often have irregular geometry and structural configuration, are subject to aging and corrosion, and are designed without specific performance-based or seismic design criteria. Due to these inherent complexities, retrofit using friction isolators can be a viable and practical solution for performance improvements. This work presents a case study of irregular industrial storage plant structure consisting of a group of six elevated silos resting on a steel frame on one side and connected to a vaulted RC structure on the other. A computational model is built incorporating nonlinearities from the components (braces, beams, columns, etc.) and from the mitigation devices. Retrofit using friction isolators is analyzed and evaluated through linear and nonlinear dynamic analyses under a set of natural ground motions. Results show the effectiveness of the mitigation strategy in terms of performance improvement.
机译:最近的地震事件指出了现有工业设施的高脆弱性,强调安全性和高损失所谓的经济活动中断和释放环境危险物质。这些结构通常具有不规则的几何形状和结构构造,经过老化和腐蚀,并且在没有基于特定的性能或地震设计标准的情况下设计。由于这些固有的复杂性,使用摩擦隔离器的改造可以是用于性能改进的可行和实用的解决方案。这项工作提出了一种案例研究,由一组六个高架筒仓组成的不规则工业储存工厂结构,在一侧上储存在钢框架上,并连接到另一个拱形RC结构。计算模型从组件(括号,梁,列等)和缓解装置中的非线性构建。通过在一组天然地运动下通过线性和非线性动态分析来分析和评估使用摩擦隔离器的改造。结果表明了减缓战略在绩效改进方面的有效性。

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