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首页> 外文期刊>Pure and Applied Geophysics >A Comparative Study of Source Complexity of Two Moderate-Sized Earthquakes in Southern Taiwan: 2016 Mw6.4 and 2010 Mw6.2 Earthquakes
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A Comparative Study of Source Complexity of Two Moderate-Sized Earthquakes in Southern Taiwan: 2016 Mw6.4 and 2010 Mw6.2 Earthquakes

机译:台湾南部两个中等地震源复杂性的比较研究:2016 MW6.4和2010 MW6.2地震

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摘要

We study the complex rupture history of the 2016 Mw6.4 Meinong earthquake and the 2010 Mw6.2 Jiaxian earthquake in southern Taiwan by simultaneously inverting near-field strong-motion records, local and teleseismic broadband waveforms along with long-period surface waves. The focal mechanism results reveal that both earthquakes may rupture two different blind faults. The rupture of the 2016 event is dominated by the strike-slip motion with minor thrust faulting, while the 2010 event is a relatively high-angle thrust earthquake. Our preferred finite-fault source models suggest that the coseismic rupture history of the 2016 event should be relatively more complex than the 2010 event. During the 2016 event, two main patches of slip characterize the coseismic slip history. The cumulative seismic moment within 12 s of rupture is about 5.36 x 10(18) N m, which is 1.9 times of the moment of the 2010 event. The slip of the 2016 event is associated with relatively larger perk slip of 0.7 m at shallower depth (similar to 18-19 km), higher average slip of 0.3 m and faster slip rate with the maximum value of 3.4 m/s. Our kinematic models can shed some light on the cause of the difference in seismic hazard between these two earthquakes, and will be further applied to analyze the deep blind fault structure in southern Taiwan.
机译:我们研究了2016 MW6.4 Meinong地震的复杂破裂历史和台湾南部2010 MW6.2嘉县地震。同时反转近场强运动记录,局部和Telesmic宽带波形以及长期表面波。焦点机制结果表明,两次地震可能会破坏两种不同的盲目断层。 2016年事件的破裂是由次射流运动的击穿故障主导,而2010年事件是相对高角度的推力地震。我们首选的有限故障源模型表明,2016年事件的电影发生破裂历史应该比2010年活动更加复杂。在2016年的事件中,两个主要的单片斑块表征了电动发电机滑动历史。破裂12秒内的累积地震时刻约为5.36 x 10(18)n m,这是2010年事件时刻的1.9倍。 2016年事件的滑动与较浅的深度(类似于18-19公里)的0.7米相对较大的Perk滑移相关,平均滑移率为0.3米,更快的滑移速率为3.4米/秒。我们的运动模型可以阐明这两种地震之间的地震危险差异的差异,并将进一步应用于分析台湾南部的深盲故障结构。

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  • 来源
    《Pure and Applied Geophysics》 |2017年第7期|共14页
  • 作者单位

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Earth &

    Planetary Phys Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Earth &

    Planetary Phys Beijing 100029 Peoples R China;

    China Earthquake Networks Ctr Beijing 100045 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Earth &

    Planetary Phys Beijing 100029 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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