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Design Decision Support for Steel Frame Buildings through an Earthquake-Induced Loss Assessment

机译:通过地震诱导的损失评估设计钢制框架建筑物的决策支持

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In recent years, there is an increasing need to quantify earthquake-induced losses throughout the expected life of a building in order to evaluate alternative design options such that we can minimize repairs in the aftermath of an earthquake. This paper discusses an analytical study that quantifies the expected economic losses in a portfolio of archetype steel frame buildings designed with perimeter special moment frames or special concentrically braced frames in urban California in accordance with current seismic provisions in the U.S. The expected economic losses associated with repair are computed based on an established loss estimation framework within the context of performance-based earthquake engineering. It is shown that repair costs in the aftermath of earthquakes vary significantly depending on the employed lateral load-resisting system, seismic design considerations as well as the analytical model representation of the archetype frame building itself.
机译:近年来,越来越需要在建筑物的预期寿命中量化地震诱导的损失,以便评估替代设计选项,使我们可以尽量减少地震后的修理。本文讨论了一个分析研究,这些研究规定了在城市加利福尼亚州的周边特殊时刻框架或城市加利福尼亚的特殊正常支撑框架中的预期经济损失,根据美国的当前与维修相关的预期经济损失,这些研究基于基于性能的地震工程内的既定损耗估计框架来计算。结果表明,地震后的修复成本根据采用的横向载荷系统,地震设计考虑以及原型框架构建本身的分析模型表示而显着变化。

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