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首页> 外文期刊>Bulletin of the Seismological Society of America >Displacement and Geometrical Characteristics of Earthquake Surface Ruptures: Issues and Implications for Seismic-Hazard Analysis and the Process of Earthquake Rupture
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Displacement and Geometrical Characteristics of Earthquake Surface Ruptures: Issues and Implications for Seismic-Hazard Analysis and the Process of Earthquake Rupture

机译:地表破裂的位移和几何特征:地震危险性分析和地震破裂过程的问题和启示

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摘要

There now exist about three dozen historical earthquakes for which investigators have constructed maps of earthquake rupture traces accompanied by descriptions of the coseismic slip observed along the fault strike. The maps and slip distributions are compiled here to place observational bounds on aspects of seismic-hazard analysis and fault mechanics. Analysis leads to an initial statistical basis to predict the end points of rupture and the amount of surface slip expected at sites along the strike during earthquakes on mapped faults. The observations also give support to the ideas that there exists a process zone or volume of about 3–4 km in dimension at the fronts of large laterally propagating earthquake ruptures within which stress changes may be sufficient to trigger slip on adjacent faults, and that the ultimate length of earthquake ruptures is controlled primarily by the geometrical complexity of fault traces and variations in accumulated stress levels along faults that arise due to the location of past earthquakes. To this may be added the observation that the form of earthquake surface-slip distributions is better described by asymmetric rather than symmetric curve forms and that earthquake epicenters do not appear to correlate in any systematic manner to regions of maximum surface slip observed along strike.
机译:现在存在大约三打历史地震,研究人员针对这些地震绘制了地震破裂痕迹图,并附有沿断裂走向观察到的同震滑动的描述。在此汇总了地图和滑动分布,以将观测范围放在地震灾害分析和断层力学方面。通过分析可以得出初步的统计依据,以预测破裂的终点和在测绘断层上地震期间沿走线地点的预期表面滑动量。这些观察结果还支持这样的观点,即在横向传播的大型地震破裂的前部存在一个约3-4 km的过程区或体积,其应力变化可能足以触发相邻断层的滑动。地震破裂的最终长度主要由断层迹线的几何复杂性以及由于过去地震的位置而引起的沿断层的累积应力水平的变化所控制。可以添加这样的观察:用非对称而不是对称曲线形式更好地描述了地震地表滑移分布的形式,并且地震震中似乎没有以任何系统的方式与沿走向观察到的最大地表滑移区域相关。

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