首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   42篇
  免费   0篇
大气科学   3篇
地球物理   11篇
地质学   14篇
海洋学   7篇
天文学   5篇
自然地理   2篇
  2023年   1篇
  2022年   1篇
  2018年   1篇
  2016年   1篇
  2015年   3篇
  2014年   1篇
  2013年   1篇
  2011年   1篇
  2008年   1篇
  2006年   1篇
  2005年   4篇
  2004年   4篇
  2002年   2篇
  2000年   2篇
  1999年   1篇
  1998年   1篇
  1996年   1篇
  1993年   1篇
  1990年   1篇
  1989年   3篇
  1987年   2篇
  1986年   2篇
  1985年   1篇
  1983年   1篇
  1980年   1篇
  1978年   1篇
  1977年   1篇
  1974年   1篇
排序方式: 共有42条查询结果,搜索用时 15 毫秒
41.
The generation of interplate earthquakes can be regarded as a process of tectonic stress accumulation and release, driven by relative plate motion. We completed a physics-based simulation system for earthquake generation cycles at plate interfaces in the Japan region, where the Pacific plate is descending beneath the North American and Philippine Sea plates, and the Philippine Sea plate is descending beneath the North American and Eurasian plates. The system is composed of a quasi-static tectonic loading model and a dynamic rupture propagation model, developed on a realistic 3-D plate interface model. The driving force of the system is relative plate motion. In the quasi-static tectonic loading model, mechanical interaction at plate interfaces is rationally represented by the increase of tangential displacement discontinuity (fault slip) across them on the basis of dislocation theory for an elastic surface layer overlying Maxwell-type viscoelastic half-space. In the dynamic rupture propagation model, stress changes due to fault slip motion on non-planar plate interfaces are evaluated with the boundary integral equation method. The progress of seismic (dynamic) or aseismic (quasi-static) fault slip on plate interfaces is governed by a slip- and time-dependent fault constitutive law. As an example, we numerically simulated earthquake generation cycles at the source region of the 1968 Tokachi-oki earthquake on the North American-Pacific plate interface. From the numerical simulation, we can see that postseismic stress relaxation in the asthenosphere accelerates stress accumulation in the source region. When the stress state of the source region is close to a critical level, dynamic rupture is rapidly accelerated and develops over the whole source region. When the stress state is much lower than the critical level, the rupture is not accelerated. This means that the stress state realized by interseismic tectonic loading essentially controls the subsequent dynamic rupture process.  相似文献   
42.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号