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Seismic Performance of Deeply Embedded Conceptual Advanced Reactors: Three-Dimensional Nonlinear Soil-Structure Interaction Analyses

机译:深层嵌入式概念先进反应堆的地震性能:三维非线性土壤结构相互作用分析

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摘要

The U.S. Nuclear Regulatory Commission's functional containment concept provides advanced nuclear power plant designers with more flexibility in terms of the civil/structural design if the appropriate set of barriers for prevention of radioactive material release exist. Some of the conceptual advanced reactor structures, without the traditional pressure boundaries of large containment structures, are proposed to be deeply embedded or buried into soil. This approach is expected to provide (1) lesser seismic demands on the structures and safety-critical structures, (2) eased regulatory efforts and overall design against other external hazards such as aircraft impact, and (3) overall cost savings. One of the important aspects of assessing the technical and economic viability of deeply embedding advanced reactor buildings is to assess the seismic performance with the understanding of effects with material and geometric nonlinearities. This study investigates the seismic response of deeply embedded or buried advanced reactors by conducting three-dimensional nonlinear soil-structure interaction analyses. Although the results indicate that there is a general trend of decreased seismic response with increased embedment depths, the change in the dynamic environment with different embedment depths and the nonlinear environment under high-intensity seismic inputs may result in increased peak response at increased embedment depths.
机译:如果存在适当的预防放射性物质释放的障碍,则美国核监管委员会的功能遏制概念为民用/结构设计提供了更高的核电站设计师,如果存在适当的防止放射性物质释放的障碍。提出了一些概念性的先进反应器结构,没有大容量结构的传统压力边界,将深深嵌入或埋入土壤中。该方法预计将提供(1)对结构和安全关键结构的较小地震要求,(2)减缓监管努力和整体设计,防止其他外部灾害,如飞机影响,(3)总成本节省。评估深度嵌入的先进反应堆建筑物的技术和经济可行性的重要方面之一是评估抗震性能,以了解材料和几何非线性的影响。本研究通过进行三维非线性土壤结构相互作用分析来研究深层嵌入或埋地反应器的地震反应。尽管结果表明,具有增加的嵌入深度的地震响应的一般趋势,但在高强度地震输入下具有不同嵌入深度和非线性环境的动态环境的变化可能导致增加的嵌入深度增加的峰值响应。

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