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Optimal seismic design for limited planning time horizon with detailed seismic hazard information

机译:具有详细的地震灾害信息的有限规划时间范围内的最佳地震设计

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This study focuses on the optimal seismic design of buildings for the limited planning time horizon considering earthquakes generated from Poisson and non-Poisson processes. The analyses of the optimal design incorporate possible effects of the time elapsed since the last major earthquake, extended service period above the planning period and costs due to partial damage and collapse. An analysis algorithm is developed based on simulation technique, considering detailed seismic information; the evaluation of the linearon-linear responses and different structural damage levels; and the assessment of the statistics of the damage cost. The algorithm is implemented and applied to simplified steel frame structures located in western Canada. Analysis results suggest that the optimal seismic design level is sensitive to the assumption of the cost of non-structural components. The analysis results also indicate that if the seismic hazard is dominated by earthquakes generated from a Poisson process, the impact of the extended service period after the planning period on the optimal design is not very significant. The impact of the elapsed time since the last major earthquake can be significant resulting in time-dependent optimal seismic design coefficients, if the seismic hazard is dominated by earthquakes generated from a non-Poisson process.
机译:这项研究的重点是考虑到泊松和非泊松过程产生的地震,在有限的规划时间范围内建筑物的最佳抗震设计。最佳设计的分析考虑了自上次大地震以来经过的时间,服务期超出计划期的延长以及部分损坏和倒塌造成的成本的可能影响。在考虑详细地震信息的基础上,基于仿真技术开发了一种分析算法。评估线性/非线性响应和不同的结构损伤水平;并评估损失成本的统计数据。该算法已实现并应用于加拿大西部的简化钢框架结构。分析结果表明,最佳抗震设计水平对非结构部件成本的假设很敏感。分析结果还表明,如果地震隐患主要是由泊松过程产生的地震所致,则计划期后延长服役期对最优设计的影响不是很大。如果地震隐患主要是由非泊松过程产生的地震所致,那么自上次大地震以来经过的时间的影响可能会非常显着,从而导致与时间相关的最佳地震设计系数。

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