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Seismic Performance Evaluation of the Jacket Type Offshore Platforms through Incremental Dynamic Analysis considering Soil-Pile-Structure Interaction

机译:考虑土桩结构相互作用的增量动态分析夹克式海上平台的地震性能评价

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Of great interest in Performance-Based Earthquake Engineering (PBEE) is the accurate estimation of the seismic performance of structures. A performance prediction and evaluation procedure is based on nonlinear dynamics and reliability theory. In this method, a full integration over the three key stochastic models is as follow: ground motion hazard curve, nonlinear dynamic displacement demand, and displacement capacity. Further, both epistemic and aleatory uncertainties are evaluated and carried through the analysis.In this paper, jacket and soil-pile system have been modeled using Finite Element program (OpenSees) and the incremental dynamic analysis (IDA) are performed to investigate nonlinear behavior of offshore platforms. The system demand is determined by performing time history response analyses of the jacket under a suite of FEMA/SAC uniform hazard ground motions. The system capacity in terms of the drift ratio against incipient collapse is generally difficult to predict since the structural response goes into nonlinear range before collapse. All the analyses are performed in two directions and the results are compared with each others. The confidence level of a jacket in each direction for a given hazard level is calculated using the procedure described.
机译:对基于性能的地震工程(PBEE)的兴趣是准确的结构抗震性能的准确估算。性能预测和评估程序是基于非线性动力学和可靠性理论。在这种方法中,三个关键随机模型的完全集成如下:地面运动危险曲线,非线性动态位移需求和位移容量。此外,通过分析评估和携带杀菌和蜕膜不确定性。在本文中,夹克和土桩系统已经使用有限元(Opensees)进行了建模,并进行增量动态分析(IDA)以研究非线性行为海上平台。通过在一套FEMA / SAC统一危险地运动下执行夹克的时间历史响应分析来确定系统需求。由于结构响应进入崩溃前的非线性范围,因此通常难以预测系统容量。所有分析都在两个方向上进行,结果与彼此进行比较。使用所描述的程序计算给定危险水平的每个方向上的夹套的置信水平。

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