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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 >Holocene paleoearthquake history on the Qingchuan fault in the northeastern segment of the Longmenshan Thrust Zone and its implications
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Holocene paleoearthquake history on the Qingchuan fault in the northeastern segment of the Longmenshan Thrust Zone and its implications

机译:龙门山冲断带东北段青川断裂全新世古地震历史及其意义

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Although much work has been performed for faults with high slip-rates, little attention has been paid to low slip-rate faults, such as the Longmenshan Thrust Zone (LTZ), on which the Wenchuan earthquake occurred. The LIZ is a long and matured fault that evolved during the Mesozoic as a structural boundary, but its Quaternary activity had been considered insignificant. The Wenchuan earthquake on the central segment of the LIZ and the following Lushan earthquake on the southwestern segment illustrate the necessity of assessing the regional seismic potential around the northeastern extension of the LTZ. However, little is known about its activity and paleoearthquake history. To solve these problems, we conducted paleoseismological trench excavations at two sites on the Qingchuan fault to establish its paleoearthquake history. Only one (and the latest) event that occurred in the Holocene is identified. Based on the radiocarbon dating, the faulting event is constrained to occur between 4115 and 3820 B.C., and a long recurrence interval of greater than similar to 6000 years is thus estimated. Judging from the matured fault structure of the Qingchuan fault, the latest event was likely to have ruptured the full length of the fault. According to the empirical scaling laws between magnitude and rupture length, the magnitude of the event is estimated to be Mw 7.6-7.9. On the basis of the slip rate from GPS measurements and the elapsed time since the last event, it is estimated that a seismic moment equivalent to Mw similar to 7.5 has been accumulated on the Qingchuan fault. Considering the increased Coulomb failure stress and the shortened time of earthquake recurrence triggered by the Wenchuan earthquake, it is suggested a high seismic risk along the Qingchuan fault and its neighboring area. Furthermore, the slow strain buildup, unadapted geometry, and matured fault structure of the LIZ may be the reason why it produces rare but large intraplate earthquakes. (C) 2015 Elsevier B.V. All rights reserved.
机译:尽管已经对高滑移率的断层进行了很多工作,但对于诸如汶川地震发生的龙门山冲断带(LTZ)这样的低滑移率断层却很少关注。 LIZ是中生代演化为构造边界的长而成熟的断层,但其第四纪活动被认为是微不足道的。 LIZ中段的汶川地震和西南段的随后的庐山地震表明,有必要评估LTZ东北延伸区域的区域地震潜力。但是,对其活动和古地震历史知之甚少。为了解决这些问题,我们在青川断裂带的两个地点进行了古地震沟槽开挖,以建立其古地震历史。仅识别出全新世中发生的一个(和最新的)事件。基于放射性碳年代测定法,断层事件被限制在公元前4115年至3820年之间发生,因此估计了一个较长的复发间隔,类似于6000年。从青川断层的成熟断层结构来看,最近的一次事件很可能使整个断层破裂了。根据大小和破裂长度之间的经验标度定律,该事件的大小估计为Mw 7.6-7.9。根据GPS测量的滑移率和自上次事件以来的经过时间,估计在青川断层上已经积累了相当于7.5的Mw的地震矩。考虑到库仑破裂应力增加和汶川地震引发的地震复发时间缩短,建议在青川断裂及其附近地区发生地震的风险较高。此外,LIZ的缓慢应变建立,不适当的几何形状和成熟的断层结构可能是其产生罕见但大的板内地震的原因。 (C)2015 Elsevier B.V.保留所有权利。

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