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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Rupture terminations and size of segment boundaries from historical earthquake ruptures in the Basin and Range Province
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Rupture terminations and size of segment boundaries from historical earthquake ruptures in the Basin and Range Province

机译:流域和兰吉省历史地震破裂的破裂终止和段边界的大小

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摘要

The fault-segmentation method is commonly used to estimate the potential earthquake size. Segment boundaries play an important role in arresting earthquake ruptures from event to event. In the Basin and Range Province, earthquake rupture terminations are commonly associated with structural discontinuities, but not all-structural discontinuities have the capability to terminate an earthquake rupture. The size of structural discontinuities with respect to the rupture length and displacement may play an important role in controlling rupture termination. Studies of the geometric pattern of seven well-documented historical earthquake ruptures in the Basin and Range Province reveal three important relationships between rupture termination and the size of structural discontinuities. Firstly, terminations of normal faulting earthquakes are often associated with structural discontinuities, at least for the five historical ruptures studied in this paper. Secondly, the sizes of structural discontinuities at the end of earthquake rupture zones are generally the largest among the structural discontinuities within the rupture zone. Thirdly, there appears to be a trend that larger earthquake ruptures are stopped by larger structural discontinuities. The size of structural discontinuities that stopped the earthquake seems to scale with the length and displacement of earthquake surface rupture.
机译:断层分割方法通常用于估计潜在的地震规模。段边界在阻止事件之间的地震破裂中起着重要作用。在盆地和山脉省,地震破裂的终止通常与结构的不连续性有关,但是并非所有结构的不连续都具有终止地震破裂的能力。关于断裂长度和位移的结构不连续性的大小可能在控制断裂终止中起重要作用。对盆地和兰格省7个有据可查的历史地震破裂的几何图案的研究揭示了破裂终止与结构间断的大小之间的三个重要关系。首先,正常断层地震的终止通常与结构的不连续性有关,至少对于本文研究的五个历史破裂而言。其次,地震破裂带末端的结构不连续性的大小通常是破裂带内结构不连续性中最大的。第三,似乎有一种趋势,即较大的结构不连续会阻止较大的地震破裂。终止地震的结构间断的大小似乎与地震表面破裂的长度和位移成比例。

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