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Potential for a large earthquake near Los Angeles inferred from the 2014 La Habra earthquake

机译:根据2014年拉哈布拉大地震推断,洛杉矶附近发生大地震的可能性

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AbstractTectonic motion across the Los Angeles region is distributed across an intricate network of strike-slip and thrust faults that will be released in destructive earthquakes similar to or larger than the 1933 M6.4 Long Beach and 1994 M6.7 Northridge events. Here we show that Los Angeles regional thrust, strike-slip, and oblique faults are connected and move concurrently with measurable surface deformation, even in moderate magnitude earthquakes, as part of a fault system that accommodates north-south shortening and westerly tectonic escape of northern Los Angeles. The 28 March 2014 M5.1 La Habra earthquake occurred on a northeast striking, northwest dipping left-lateral oblique thrust fault northeast of Los Angeles. We present crustal deformation observation spanning the earthquake showing that concurrent deformation occurred on several structures in the shallow crust. The seismic moment of the earthquake is 82% of the total geodetic moment released. Slip within the unconsolidated upper sedimentary layer may reflect shallow release of accumulated strain on still-locked deeper structures. A future M6.1–6.3 earthquake would account for the accumulated strain. Such an event could occur on any one or several of these faults, which may not have been identified by geologic surface mapping.
机译:摘要整个洛杉矶地区的构造运动分布在错综复杂的走滑和逆冲断层网络中,这些断层将在类似于或大于1933 M6.4长滩和1994 M6.7北岭事件的破坏性地震中释放。在这里,我们表明,洛杉矶断层的逆冲断层,走滑断层和斜断层是可连接的,并且与可测量的表面变形同时移动,即使在中等强度的地震中也是如此,这是断层系统的一部分,该断层系统容纳了北北向的缩短和西风的构造逃逸洛杉矶。 2014年3月28日的La Habra M5.1地震发生在洛杉矶东北部的一个东北向,西北倾斜的左斜斜冲断层中。我们提供了跨越地震的地壳形变观测,表明在浅层地壳中的多个结构上同时发生形变。地震的地震矩占释放的总大地矩的82%。未固结的上部沉积层内的滑动可能反映了仍锁定的较深结构上的累积应变的浅释放。未来的M6.1–6.3地震将解释累积的应变。此类事件可能发生在这些断层中的任何一个或几个断层上,而这些断层可能尚未通过地质表面测绘识别出来。

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