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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 >A unified earthquake catalogue for the Sea of Marmara Region, Turkey, based on automatized phase picking and travel-time inversion: Seismotectonic implications
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A unified earthquake catalogue for the Sea of Marmara Region, Turkey, based on automatized phase picking and travel-time inversion: Seismotectonic implications

机译:土耳其马尔马拉地区海洋统一地震目录,基于自动化阶段采摘和旅行时间反演:地震局部影响

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The Marmara section of the North Anatolian Fault Zone (NAFZ) is late in its seismic cycle and can be expected to produce a magnitude M up to 7.4 earthquake during the next decades in direct vicinity to the 15-million population center Istanbul. This setting translates the seismic hazard into very high risk and makes a thorough understanding of the current seismotectonic setting of this NAFZ section a pressing task. The absence of near-fault stations along the most part of the offshore Marmara section limits the reliability of existing seismicity catalogues for this region. For the first time we combine the different regional permanent networks thereby optimizing azimuthal coverage and present a refined hypocenter catalogue for the Sea of Marmara on this basis. Compared to the original locations, adoption of a refined automated technique to determine precise onset times for the different body waves and an iterative travel-time inversion scheme, lead to substantial improvement of 6812 absolute earthquake locations, particularly in the epicentral distribution. The automated processing is explained in detail. Further optimization is achieved through relative relocation of 4407 earthquakes. Our catalogue covers more than a decade (2006–2016) with a regional moment-magnitude of completeness of Mc?=?2.1. The epicentral distribution delineates the Marmara Section, i.e. the northern NAFZ branch, as the seismically most active fault strand. We identify several aseismic fault patches that are interpreted to represent locked parts of the fault. Seismic activity in the past decade predominantly occurs off the main fault on the edges of the aseismic patches, supporting previous studies that the Marmara section of the NAFZ contains both locked and creeping fault portions. Single-event focal mechanisms (2.7 ≤ Mw ≤ 4.5) indicate that currently both strike-slip and normal faulting occur, confirming the transtensional setting of the region.
机译:北安纳托利亚断裂区(NAFZ)的马尔马拉部分在其地震循环中迟到,可以在下几十年内直接与1.5亿人口中心伊斯坦布尔的直接附近产生高达7.4地震的大小。这种环境将地震危害转化为非常高的风险,并对这一NAFZ部分的当前地震型设置进行了彻底了解迫切任务。沿海马尔马拉部分大部分缺乏近断层站限制了该地区现有地震性目录的可靠性。我们首次结合了不同的区域永久网络,从而优化了四方覆盖范围,并在此基础上为马尔马拉海洋提供精制的次级次长者目录。与原始位置相比,采用精细的自动化技术来确定不同体波的精确发作时间和迭代行进时间反转方案,导致6812绝对地震位置的显着提高,特别是在震中分布中。详细解释自动化处理。通过相对迁移到4407地震来实现进一步的优化。我们的目录涵盖了十多年(2006 - 2016年),具有MC的完整性的区域时刻级别?=?2.1。震中分布描绘了Marmara部分,即Nafz分支,作为地震最活跃的断层股。我们识别了几种被解释为代表故障的锁定部分的爆发性故障贴片。过去十年的地震活动主要发生在抗爆斑块边缘的主要故障,支持先前的研究表明,NAFZ的Markara部分包含锁定和爬行故障部分。单事件焦点机制(2.7≤MW≤4.5)表示目前发生击穿和正常断层,确认该区域的静音设置。

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