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Seismic Performance Assessment of a Conventional Multi-storey Building

机译:传统多层建筑的抗震性能评估

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Abstract Recent earthquakes have revealed that conventional seismic design philosophy allows for large levels of nonstructural damage. Nonstructural earthquake damage results in extensive repair costs and lengthy functional disruptions, as nonstructural systems comprise the majority of building investment and are essential to building operations. A better understanding of the expected overall seismic performance of code-compliant buildings is needed. This study investigates the seismic performance of a conventional building. A 16-storey steel office building was designed using a modern seismic structural code (Eurocode 8). This study is the first to assess in detail the substantial earthquake repair costs expected in a modern Eurocode concentric braced frame structure, considering nonstructural systems with the FEMA P-58 procedure. The breakdown of total repair costs by engineering demand parameter and by fragility group is novel. The seismic performance assessment indicated that substantial earthquake repair costs are expected. Limitations of the Eurocode nonstructural damage methodology were revealed in a novel manner using FEMA P-58, as the prescribed drift limits did not minimize nonstructural repair costs. These findings demonstrate the need for design procedures that improve nonstructural seismic performance. The study results provide a benchmark on which to evaluate retrofit alternatives for existing buildings and design options for new structures.
机译:摘要最近的地震表明,传统的地震设计理念允许大范围的非结构性破坏。非结构性地震破坏会导致大量的维修费用和长时间的功能中断,因为非结构性系统构成了大部分建筑投资,并且对建筑运营至关重要。需要更好地了解符合规范的建筑物的预期总体抗震性能。这项研究调查了常规建筑的抗震性能。使用现代抗震结构规范(欧洲规范8)设计了16层高的钢制办公楼。这项研究是第一个详细评估现代Eurocode同心支撑框架结构中预期的重大地震修复成本的方法,考虑到采用FEMA P-58程序的非结构系统。按工程需求参数和脆弱性组划分的总维修成本细分是新颖的。地震性能评估表明,预计将需要大量的地震修复费用。使用FEMA P-58以新颖的方式揭示了Eurocode非结构性损坏方法的局限性,因为规定的漂移极限并未使非结构性维修成本降到最低。这些发现表明需要改进非结构抗震性能的设计程序。研究结果为评估现有建筑物的替代方案和新结构的设计方案提供了基准。

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