首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >NONLINEAR SEISMIC SOIL-PILE-STRUCTURE INTERACTION ANALYSIS OF FIXED OFFSHORE PLATFORMS
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NONLINEAR SEISMIC SOIL-PILE-STRUCTURE INTERACTION ANALYSIS OF FIXED OFFSHORE PLATFORMS

机译:固定海上平台的非线性地震土-桩-结构相互作用分析

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A nonlinear seismic soil-pile-structure interaction (SSPSI) analysis of fixed offshore platforms constructed on pile foundations including both vertical and battered piles is presented. The analysis is carried out in time domain and the effects of soil nonlinearity, discontinuity at pile soil interfaces, energy dissipation through soil radiation damping, formation of soil layers on bed rock, structural material nonlinearity and geometrical nonlinearity are considered. A combination of FEM approach and BNWF approach is used in modeling pile (substructure), platform structure (superstructure) and soil media. Gapping in clay is modeled by a special connector configuration. To find out the ground motion of soil layers caused by earthquake excitations at bed rock, a nonlinear site response analysis is performed. The effects of soil-pile-structure interaction on nonlinear seismic analysis of offshore platforms are discussed. A comparison of SSPSI model and pile stub modeling is investigated and it is generally concluded that considering soil-pile-structure interaction causes higher deflections and lower stresses in the platform elements due to soil flexibility, nonlinearity and radiation damping and leads to a more feasible and realistic platform design. The sequence of generation of plastic zones in the structure and their distribution are also investigated. Results show that this nonlinear behavior is started at brace elements and then propagated to leg elements as earthquake last.
机译:提出了在包括竖向桩和打桩桩在内的桩基上构建的固定海上平台的非线性地震土-桩-结构相互作用(SSPSI)分析。分析是在时域进行的,并考虑了土壤非线性,桩土界面不连续性,通过土壤辐射阻尼耗能,基岩上土层的形成,结构材料非线性和几何非线性的影响。有限元方法和BNWF方法的组合用于建模桩(子结构),平台结构(上部结构)和土壤介质。粘土中的间隙是通过特殊的连接器配置来建模的。为了找出由地震激发引起的基岩土层的地震动,进行了非线性场地响应分析。讨论了土-桩-结构相互作用对海上平台非线性地震分析的影响。对SSPSI模型和桩桩模型进行了比较,得出的结论是,考虑到土-桩-结构相互作用,由于土壤的柔韧性,非线性和辐射阻尼,在平台单元中会导致较高的挠度和较低的应力,从而导致更为可行和现实的平台设计。还研究了结构中塑性区的产生顺序及其分布。结果表明,这种非线性行为始于支撑单元,最后随着地震传播到腿单元。

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