...
首页> 外文期刊>Seismological research letters >Three-dimensional L ong-period G roundmotion S imulations in the U pper M ississippi Embayment
【24h】

Three-dimensional L ong-period G roundmotion S imulations in the U pper M ississippi Embayment

机译:密西西比河上游上空的三维长周期G圆运动模拟

获取原文
获取原文并翻译 | 示例
           

摘要

We employed a 3D velocity model and 3D wave propagation code to simulate long-period ground motions in the upper Mississippi embayment. This region is at risk from large earthquakes in the New Madrid seismic zone (NMSZ) and observational data are sparse, making simulation a valuable tool for predicting the effects of large events. We undertook these simulations to estimate the magnitude of shaking likely to occur and to investigate the influence of the 3D embayment structure and finite-fault mechanics on ground motions. There exist three primary fault zones in the NMSZ, each of which was likely associated with one of the main shocks of the 1811–12 earthquake triplet. For this study, three simulations have been conducted on each major segment, exploring the impact of different epicentral locations and rupture directions on ground motions. The full wave field up to a frequency of 0.5 Hz is computed on a 200 × 200 × 50-km3 volume using a staggered-grid finite-difference code. Peak horizontal velocity and bracketed durations were calculated at the free surface. The NMSZ simulations indicate that for the considered bandwidth, finite-fault mechanics such as fault proximity, directivity effect, and slip distribution exert the most control on ground motions. The 3D geologic structure of the upper Mississippi embayment also influences ground motion with indications that amplification is induced by the sharp velocity contrast at the basin edge.
机译:我们采用了3D速度模型和3D波传播代码来模拟密西西比河上游上层的长期地面运动。该地区处于新马德里地震区(NMSZ)发生大地震的危险中,观测数据稀疏,这使模拟成为预测大事件影响的有价值的工具。我们进行了这些模拟,以估计可能发生的晃动幅度,并研究3D嵌入结构和有限故障力学对地面运动的影响。 NMSZ中存在三个主要断裂带,每个断裂带都可能与1811-12年地震三重态的主要地震之一有关。对于本研究,已对每个主要部分进行了三个模拟,探讨了不同震中位置和破裂方向对地震动的影响。使用交错网格有限差分码在200×200×50 km3的体积上计算出高达0.5 Hz频率的全波场。在自由表面上计算峰值水平速度和包围持续时间。 NMSZ仿真表明,对于所考虑的带宽,有限故障机制(如故障接近度,方向性效应和滑动分布)对地面运动的控制力最大。密西西比河上游上部的3D地质结构也影响地面运动,并有迹象表明,盆地边缘的强烈速度对比引起了放大。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号