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Earthquakes along Eltanin transform system, SE Pacific Ocean: fault segments characterized by strong and poor seismic coupling and implications for long-term earthquake prediction

机译:东南太平洋埃尔塔宁(Eltanin)变换系统的地震:断层段以强耦合和弱耦合为特征,对长期地震预测具有重要意义

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摘要

Centroid moment tensor solutions are recomputed for 190 earthquakes from 1976 to 2010 along the Heezen, Tharp and Hollister transform faults of the Eltanin system using a 3-D seismic velocity model. The total length of the three en echelon faults is nearly 1000 km; each is characterized by fast long-term rates of displacement of about 80 mm yr^-1. Strike-slip faulting with moment magnitudes Mw up to 6.4 characterizes most of these events. The few involving normal faulting are located up to 40 km on either side of the transforms and involve extension nearly normal to the transforms. This partitioning of slip likely results from changes during the last few million years in the Euler pole for relative motion between the Antarctic and Pacific plates. Some parts of the Heezen and Tharp transforms exhibit strong seismic coupling but others were aseismic at the resolution of our study, Mw > 5.0-5.5. Earthquakes were not found along nearby fast spreading ridges at that resolution. We calculate downdip widths of seismic coupling of about 5 km for four strongly coupled segments from observed moment rates and lengths along strike assuming earthquake activity accounts for the entire plate motion. Major differences in seismic coupling along strike are not in accord with common thermal models of plate cooling but instead are attributed to varying degrees of metamorphism, rock type and effective normal stress and possibly to the presence of short intratransform spreading centres. One 30-42-km-long segment of the Heezen transform that appears to be an isolated well-coupled asperity has ruptured in eight earthquakes of Mw 5.9-6.1 quasi-periodically with a coefficient of variation of 0.26 every 4.0 ± 1.0 yr. Other well-coupled fault segments, which were sites with earthquakes up to Mw 6.39 and fewer events since 1976, have average repeat times of about 7-24 yr. The fast rate of plate motion, maximum size of events and relatively short repeat times make these fault segments a good laboratory for research on quasi-periodic behaviour and earthquake prediction.
机译:使用3-D地震速度模型,重新计算了1976年至2010年间沿Eltanin系统的Heezen,Tharp和Hollister变换断层的190次地震的质心矩张量解。三个梯级断层的总长度近1000 km;每一个的特征都是约80mm yr ^ -1的快速长期位移速率。这些事件的大多数都表现为矩量级Mw高达6.4的走滑断层。少数涉及正常断层的区域位于变换的两侧,最长可达40 km,并且涉及几乎垂直于变换的扩展。滑移的这种划分可能是由于最近几百万年的欧拉极点在南极和太平洋板块之间的相对运动而发生的变化。 Heezen和Tharp变换的某些部分表现出较强的地震耦合,但在我们研究的分辨率Mw> 5.0-5.5时,其他部分则是抗震的。在该分辨率下,未在附近快速蔓延的山脊上发现地震。我们假设地震活动占整个板块运动的影响,根据观察到的矩速率和沿走向的长度,计算出四个强耦合段地震耦合的下倾宽度约5 km。沿走向的地震耦合的主要差异与板式冷却的常见热模型不一致,而是归因于变质程度,岩石类型和有效法向应力的不同,并且可能归因于短的内部变质扩展中心的存在。 Heezen变换的一个30-42公里长的部分似乎是孤立的耦合良好的粗糙,在准周期性的5.9-6.1 Mw地震中发生了八次准周期破裂,每4.0±1.0年的变异系数为0.26。其他耦合良好的断层段,即自1976年以来地震达6.39兆瓦且事件较少的地点,平均重复时间约为7-24年。板块运动速度快,事件的最大规模和相对短的重复时间使这些断层段成为研究准周期性行为和地震预测的良好实验室。

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    Sykes Lynn R.; Ekström Göran;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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