Seismic Reliability Analysis of Offshore Fixed Platforms Using Incremental Dynamic Analysis

IF 1 Q4 ENGINEERING, CIVIL Civil Engineering Infrastructures Journal-CEIJ Pub Date : 2018-12-01 DOI:10.7508/CEIJ.2018.02.001
M. Mohammadizadeh, Kazem Vahidi, H. Ronagh
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引用次数: 3

Abstract

It is generally accepted that performance-based design has to be reliability-based. Seismic performance evaluation is based on nonlinear dynamics and reliability theory taking into account uncertainties during analysis. Considering the economic importance of jacket type offshore platforms, the present research aims to assess the seismic performance of offshore steel platforms. In this study, three platforms located in the Persian Gulf were modeled using three dimensional structural modeling tools. Each platform was modeled and analyzed using both rigid and pinned connections. Reliability analysis was performed in accordance with Federal Emergency Management Agency (FEMA) guidelines using the results of incremental dynamic analysis for the three platforms. The results showed that platforms possessing rigid connections provide the desired confidence level of FEMA for the performance level of collapse prevention while only one platform with pinned connections was able to provide the desired confidence level.
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基于增量动力分析的海上固定平台地震可靠性分析
人们普遍认为,基于性能的设计必须以可靠性为基础。抗震性能评估基于非线性动力学和可靠性理论,在分析过程中考虑了不确定性。考虑到导管架式海洋平台的经济重要性,本研究旨在评估海洋钢平台的抗震性能。在本研究中,使用三维结构建模工具对位于波斯湾的三个平台进行了建模。使用刚性连接和销连接对每个平台进行建模和分析。根据联邦紧急事务管理局(FEMA)的指导方针,使用三个平台的增量动态分析结果进行可靠性分析。结果表明,具有刚性连接的平台提供了FEMA对倒塌预防性能水平的期望置信水平,而只有一个具有固定连接的平台能够提供期望的置信水平。
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来源期刊
CiteScore
1.30
自引率
60.00%
发文量
0
审稿时长
47 weeks
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