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Seismic design and importance factor: Benefit/cost for overall service time versus per unit service time

机译:抗震设计和重要性因素:总体维修时间/单位维修时间的收益/成本

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The maximum expected monetary benefit or minimum expected cost rule are often adopted to assess the optimum structural design levels under infrequent large earthquakes. In the assessment, the monetary benefit or cost functions are frequently established by considering the overall benefit or lifecycle cost at present value for a given structural design life. The selection of the structural design life is somewhat arbitrary, and in many cases one is interested in maximizing the structural service time or the benefit per unit service time. The consideration of the benefit (or cost) at present value per lifecycle or per unit service time may lead to different optimum design levels for a given planning time horizon. Moreover, it is unknown if the recommended importance factor in design codes to increase the seismic design load for classes of buildings is optimum. These two issues are investigated through numerical analyses by placing a structure at several different locations in Mexico and considering assembled detailed seismic hazard model. The implication of the results for the codified designs and for selecting the importance factor is discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在不经常发生大地震的情况下,通常采用最大预期货币收益或最小预期成本规则来评估最佳结构设计水平。在评估中,通常通过考虑给定结构设计寿命的现值总收益或生命周期成本来建立货币收益或成本函数。结构设计寿命的选择在某种程度上是任意的,并且在许多情况下,人们希望最大化结构使用时间或每单位使用时间的收益。考虑到每个生命周期或每个单位服务时间的现值所带来的收益(或成本),可能会导致给定计划时间范围内不同的最佳设计水平。此外,未知的是,在设计规范中建议的增加重要等级的抗震设计的重要性因子是否最佳。通过在墨西哥的几个不同位置放置结构并考虑组装的详细地震灾害模型,通过数值分析来研究这两个问题。讨论了结果对于编码设计和选择重要性因子的意义。 (C)2015 Elsevier Ltd.保留所有权利。

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