首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.8: Seismic Engineering >FINITE ELEMENT MODELS FOR COMPUTING SEISMIC INDUCED SOIL PRESSURES ON DEEPLY EMBEDDED NPP STRUCTURES
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FINITE ELEMENT MODELS FOR COMPUTING SEISMIC INDUCED SOIL PRESSURES ON DEEPLY EMBEDDED NPP STRUCTURES

机译:计算深埋NPP结构上地震诱发土压力的有限元模型

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This paper discusses computations of seismic induced soil pressures using finite element (FE) models for deeply embedded and/or buried (DEB) stiff structures, such as those appearing in the conceptual designs of structures for advanced reactors. For DEB structures, the soil-structure interaction (SSI) effect is expected to have a strong influence on the estimate of the seismic induced soil pressures, especially for stiff structures embedded in soft soil strata. In this paper, two FE models are developed using the SASSI and LS-DYNA computer programs, representing respectively the substructure subtracting method and explicit FE algorithm. SASSI utilizes the wave propagation theory and the principle of superposition to treat the SSI phenomenon. In the LS-DYNA analysis, an attempt is made to apply the direct approach to the SSI effect, which treats the near field soil with an explicit FE mesh that is connected to a transmitting boundary to approximate wave propagation in the half-space.rnThe structural model used for the study is derived from the characteristics of a conceptual design for an advanced reactor. The structure is founded in a soft soil overburden underlain by a rock and the input seismic motion is specified at rock outcrop and has a zero period acceleration (ZPA) equal to 0.3 g, typical of review level earthquakes for nuclear power plant structures in the Central and Eastern United States. Various depths of burial (DOB) for the structure are considered in the analysis to afford an assessment of the DOB effect on the seismic induced soil pressure estimates determined by these methods. Comparisons and discussions of the analysis results computed by the two approaches are provided.
机译:本文讨论了使用有限元(FE)模型对深埋和/或埋入(DEB)刚性结构进行地震诱发土压力的计算,例如高级反应堆结构概念设计中出现的结构。对于DEB结构,预计土-结构相互作用(SSI)效应对地震诱发土压力的估计有很大影响,尤其是对于埋在软土层中的刚性结构而言。在本文中,使用SASSI和LS-DYNA计算机程序开发了两个有限元模型,分别表示子结构减法和显式有限元算法。 SASSI利用波传播理论和叠加原理来处理SSI现象。在LS-DYNA分析中,尝试将直接方法应用于SSI效应,即使用连接到发射边界的显式有限元网格处理近场土壤,以近似半波中的波传播。用于研究的结构模型源自先进反应堆概念设计的特征。该结构位于岩石下覆的软土覆盖层中,输入的地震运动在岩石露头处确定,零周期加速度(ZPA)等于0.3 g,这是中部核电站结构的典型回顾性地震和美国东部。在分析中考虑了该结构的各种埋藏深度(DOB),以评估DOB对通过这些方法确定的地震诱发土压力估算的影响。提供了两种方法计算的分析结果的比较和讨论。

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