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Fragility of Hydraulic Elevators for Use in Performance-Based Earthquake Engineering

机译:基于性能的地震工程中液压电梯的易碎性

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摘要

New performance-based earthquake engineering methods developed by the Pacific Earthquake Engineering Research Center, the Applied Technology Council, and others include damage analysis at a highly detailed level, requiring the compilation of fragility functions for a large number of damageable generic structural and nonstructural components. This brief paper presents the development of a fragility function for hydraulic elevators. It uses post-earthquake survey data from 91 elevators in nine California locations after two earthquakes. Surveys were used to collect data on facilities and elevators. Ground-motion records from the California Integrated Seismic Network were used to estimate engineering demands at each site. Binary regression analysis was used to fit a fragility function, which takes the form of a lognormal cumulative distribution function with median value of PGA=0.42 g and logarithmic standard deviation of 0.3. The fragility function appears to be reasonable based on four criteria.
机译:太平洋地震工程研究中心,应用技术委员会及其他机构开发的基于性能的新地震工程方法,包括高度详细的破坏分析,要求为大量可破坏的通用结构和非结构组件汇编易碎性函数。这篇简短的论文介绍了液压升降机的脆弱性功能的发展。在两次地震后,它使用了来自加利福尼亚州9个地点的91部电梯的地震后调查数据。调查用于收集有关设施和电梯的数据。来自加利福尼亚综合地震台网的地震动记录被用来估算每个站点的工程需求。使用二元回归分析来拟合脆弱性函数,该函数采用对数正态累积分布函数的形式,中值PGA = 0.42 g,对数标准偏差为0.3。基于四个标准,脆弱性函数似乎是合理的。

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    Porter Keith;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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