...
首页> 外文期刊>Ocean Engineering >Effect of kinematic fault rupture process on tsunami propagation
【24h】

Effect of kinematic fault rupture process on tsunami propagation

机译:运动断层破裂过程对海啸传播的影响

获取原文
获取原文并翻译 | 示例

摘要

The scope of this study is to investigate the effect of the kinematic rupture process on tsunami propagation and corresponding tsunami hazards in coastal regions. It is significant for the tsunageneric earthquakes of long fault length and subsequent long duration of the fault rupture in the strike direction. Most previous studies on the tsunami hazard assessments of the Manila Trench did not consider the effect of the rupture process of huge plates. The movements of the seabed near the earthquake source are calculated by Okada model. The free surface elevation triggered by the seafloor motion is modeled by the nonlinear shallow water equations. The 2004 Indian Ocean tsunami and the 2011 Japan Tohoku tsunami are used to validate the numerical model by comparing with measurement data. The numerical experiments of the tsunami propagation for the cases of different source rupture velocities in uniform depth and continental shelf are carried out to understand the mechanism of the changes of the tsunami arrival time and the tsunami amplitude due to the kinematic rupture process. Stimulated by the long duration of plate motion of 2004 Indian Ocean tsunami, we propose several typical patterns of the rupture process of the long fault of the Manila Trench and analyze quantitatively on the role of the uncertain rupture process of tectonics source in tsunami propagation in the South China Sea. Our results have highlighted that the slow rupture velocity will remarkable affect the tsunami arrival time and maximum amplitude in the South China Sea, comparing to the instantaneous rupture. It is suggested that the rupture process is essential for assessments of the tsunami hazards generated by submarine mass failure with extreme long earthquake rupture source.
机译:这项研究的范围是调查运动破裂过程对沿海地区海啸传播和相应海啸危害的影响。这对于长断层长度的海啸地震以及随后沿走向的断层破裂持续时间长的地震意义重大。以前有关马尼拉海沟海啸危害评估的大多数研究都没有考虑大板块破裂过程的影响。冈田模型计算了震源附近海床的运动。通过非线性浅水方程对海底运动触发的自由表面高度进行建模。通过与测量数据进行比较,使用2004年印度洋海啸和2011年日本东北海啸来验证数值模型。为了了解运动破裂过程中海啸到达时间和海啸振幅变化的机制,对均匀深度和大陆架不同震源破裂速度情况下的海啸传播进行了数值实验。在2004年印度洋海啸的板块运动持续时间很长的刺激下,我们提出了马尼拉海沟长断层破裂过程的几种典型模式,并定量分析了构造学源的不确定性破裂过程在海啸传播中的作用。南中国海。我们的结果表明,与瞬时破裂相比,缓慢的破裂速度将显着影响南海海啸的到达时间和最大振幅。有人认为,破裂过程对于评估由具有极长地震破裂源的海底物质破坏引起的海啸危害至关重要。

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