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首页> 外文期刊>Journal of earth system science >Site Response Zones And Short-period Earthquake Ground Motion Projections For The Las Vegas Basin
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Site Response Zones And Short-period Earthquake Ground Motion Projections For The Las Vegas Basin

机译:拉斯维加斯盆地的场地响应区和短期地震地震动预测

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A deterministic seismic hazard analysis was conducted to address the effect of local soil conditions on earthquake-induced strong ground motion in the Las Vegas Basin, Nevada (US). Using a large geological and geotechnical database, two response units were defined: a fine-grained unit, predominantly clay; and a coarse-grained unit, predominantly gravel. A moderate number of high-quality shallow shear wave velocity measurements were collected from which characteristic shear wave velocity profiles were developed for each response unit. An equivalent-linear one-dimensional site response model was used. The model was calibrated using a basin-wide, small-strain ground motion database. Calibration tests showed that ground motion projections become increasingly conservative with increasing ground-motion amplitude. Projections were overconservative for the coarsegrained response unit, likely due to the sparseness of the velocity database. For the earthquake response analyses, historical ground motions were used to model characteristic 'bedrock' motion for earthquakes on 10 faults judged to be critical. Response spectral envelopes were generated for each unit through Monte-Carlo simulations. For the fine-grained response unit, 95th percentile peak ground acceleration, peak spectral acceleration and predominant period were 310 cm/s~2, 1100 cm/s~2, and 0.29 s, respectively. With respect to codified design spectra, projections are lower at short periods and higher at long periods. Projections of peak spectral accelerations for the coarsegrained response unit, were more than double that of codified spectra; however, they are believed to be overconservative. Near-fault effects and basin-edge effects, though potentially important, were not considered in these analyses.
机译:进行了确定性的地震危害分析,以解决当地土壤条件对美国内华达州拉斯维加斯盆地地震引起的强烈地面运动的影响。使用大型地质和岩土工程数据库,定义了两个响应单位:细粒单元,主要是黏土。和一个粗粒单元,主要是砾石。收集了中等数量的高质量浅横波速度测量值,从中为每个响应单元建立了特征横波速度分布图。使用了等效线性的一维站点响应模型。使用盆地范围的小应变地震动数据库对模型进行了校准。校准测试表明,随着地面运动幅度的增加,地面运动投影变得越来越保守。对于粗粒度响应单元,投影过于保守,可能是由于速度数据库的稀疏性。为了进行地震响应分析,使用了历史地面运动来模拟被判定为关键的10个断层的地震特征性“基岩”运动。通过蒙特卡洛模拟为每个单元生成响应频谱包络。对于细粒度响应单元,第95个百分点的地面峰值加速度,峰值频谱加速度和主要周期分别为310 cm / s〜2、1100 cm / s〜2和0.29 s。关于编码设计范围,预测在短期内较低,而在长期内较高。粗粒度响应单元的峰值光谱加速度投影是编码光谱的两倍以上;但是,它们被认为是过度保守的。这些分析未考虑近断层效应和盆地边缘效应,尽管可能很重要。

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