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Establishing Outcrop Time Series at Various Depths in a Nonlinear Soil Column: An Iterative Approach

机译:在非线性土柱中建立不同深度的露头时间序列:一种迭代方法

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Seismic soil-structure interaction (SSI) analysis of nuclear facilities is an important consideration during design and retrofit. SSI tools used in the nuclear industry are currently based on an equivalent linear (EL) approach. Procedures for developing input ground motion for EL approaches are well established. However, the procedures for establishing input ground motion for nonlinear soil-structure interaction (NLSSI) analysis of nuclear facilities are not well established. A collaborative research group at Idaho National Laboratory has recently developed analytical methods and numerical tools for using NLSSI analysis for nuclear facility seismic calculations. NLSSI analysis for a nuclear facility allows for calculation of seismic wave motion through a near-field soil domain using either (a) vertically propagating shear and compressive waves, which is the current industry practice, or (b) a three-dimensional nonvertical wave field. This technical note presents an iterative procedure for establishing outcrop motion at a depth in the soil column for NLSSI analysis that uses vertically propagating shear waves.The approach presented in this technical note starts with a known ground motion at the surface that is deconvolved to a depth, and then the obtained motion is convolved up to a different desired location of input for the NLSSI model. To demonstrate the validity of the approach, a finite element soil column that is representative of a nuclear facility site in the United States is used to produce compatible outcrop seismic time series for reduced nonlinear soil mesh depths. The developed approach for reducing the nonlinear soil column model depth is a two-step iterative method. The first step is establishing an outcrop time series at the lowest depth considered that produces the top-of-soil response spectrum of an actual recorded ground motion. The second step is providing compatible outcrop time series at a shallower depth based on the information from the first step.A comparison of the 5% damped response spectrum from the resulting acceleration time series based on the iterated outcrop motions and the original acceleration time series is conducted. The study shows that the proposed iterative approach produced comparable results within 1% range of the original recorded time series results when sufficient iterations were performed.
机译:核设施的地震土-结构相互作用(SSI)分析是设计和改造期间的重要考虑因素。核工业中使用的SSI工具当前基于等效线性(EL)方法。开发用于EL方法的输入地面运动的程序已经很好地建立了。但是,建立用于核设施的非线性土壤-结构相互作用(NLSSI)分析的输入地面运动的程序尚不完善。爱达荷州国家实验室的一个合作研究小组最近开发了使用NLSSI分析进行核设施地震计算的分析方法和数值工具。针对核设施的NLSSI分析允许使用(a)垂直传播的剪切波和压缩波(这是当前的行业惯例)或(b)三维非垂直波场来计算通过近场土壤域的地震波运动。本技术说明介绍了一种迭代程序,该过程使用垂直传播的剪切波在NLSSI分析中的土壤柱深度处建立露头运动。本技术说明中介绍的方法首先是将已知的地面运动分解为深度后的地面运动,然后将获得的运动卷积到NLSSI模型的输入的其他所需位置。为了证明该方法的有效性,使用了代表美国核设施站点的有限元土柱来生成兼容的露头地震时间序列,以减少非线性土壤网格深度。减少非线性土柱模型深度的已开发方法是两步迭代方法。第一步是在考虑到的最低深度处建立露头时间序列,以产生实际记录的地面运动的土壤顶部响应谱。第二步是根据第一步提供的信息,在更浅的深度提供兼容的露头时间序列,根据迭代露头运动和原始加速度时间序列得出的加速度时间序列中5%阻尼响应谱的比较为进行。研究表明,当进行足够的迭代时,所提出的迭代方法在原始记录的时间序列结果的1%范围内产生了可比的结果。

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