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首页> 外文期刊>Geophysical Research Letters >Dynamic models of earthquakes on the North Anatolian fault zone under the Sea of Marmara: Effect of hypocenter location
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Dynamic models of earthquakes on the North Anatolian fault zone under the Sea of Marmara: Effect of hypocenter location

机译:马尔马拉海下北安纳托利亚断裂带的地震动力学模型:震源位置的影响

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摘要

We perform three-dimensional spontaneous dynamic rupture models of potential earthquakes on the geometrically complex North Anatolian fault zone (NAFZ) under the Marmara Sea, Turkey. The NAFZ south of the city of Istanbul consists of a large-scale extensional stepover, with right lateral strike-slip segments linked by an oblique normal segment. We find that earthquakes nucleating near the stepover do not propagate across the entire fault system due to the statically unfavorable stress field on the oblique fault, and lead to moderate-size events only. However, earthquakes initiating a significant distance from the stepover cause significant dynamic unclamping of the oblique fault, and thus generate large through-going ruptures. Dynamic unclamping also produces supershear rupture propagation in the vicinity of fault discontinuities. The results emphasize that estimations of earthquake size, rupture propagation, and slip distribution cannot be decoupled from the location of the hypocenter and the orientation of the geometrically complex fault system within the tectonic stress field.
机译:我们在土耳其马尔马拉海之下几何复杂的北安纳托利亚断层带(NAFZ)上执行潜在地震的三维自发动态破裂模型。伊斯坦布尔市以南的NAFZ由大规模的跨步式跨步组成,右侧的横向走滑段由倾斜的法线段链接。我们发现,由于倾斜断层上的静应力场不利,在阶跃附近成核的地震不会在整个断层系统中传播,只会导致中等规模的事件。然而,地震从步阶开始很远的距离会引起斜断层的明显的动态松动,从而产生较大的贯穿断裂。动态松开还会在断层间断附近产生超剪切断裂传播。结果强调,地震震级,破裂传播和滑动分布的估计不能与震源位置和构造应力场内几何复杂断层系统的方向解耦。

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