首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Seismicity, active faults, stress patterns, and rupture processes in the Hualien region, Taiwan, investigated using the 1990 Hualien earthquake sequence
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Seismicity, active faults, stress patterns, and rupture processes in the Hualien region, Taiwan, investigated using the 1990 Hualien earthquake sequence

机译:利用1990年花莲地震序列对台湾花莲地区的地震,活动断层,应力模式和破裂过程进行了调查

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摘要

The Hualien mainshock-aftershock sequence from December 1990 to January 1991 was used to investigate seismicity, active faults, stress patterns, and complex rupture processes in the Hualien region of eastern Taiwan. A combined data set, compiled from observations by the regional seismic network (Taiwan Telemetered Seismograph Network, TTSN) and a dense aftershock monitoring array (Hualien Temporary Seismic Network, HTSN), provided high-quality seismic data. Using these data, earthquake source parameters could be well constrained by the joint hypocenter determination (JHD) and double-difference relocation methods. These two relocation methods presented similar results and produced improved estimations of earthquake location. Station corrections determined by JHD showed significant lateral velocity variations across the Yuehmei fault. The relocated seismicity indicated that a previously known active fault, the Chimei fault, extends to offshore. Earthquake relocations also revealed a northwest dipping seismicity probably related to the Chimei fault. In addition, three sets of focal mechanism solutions are presented and their discrepancies are attributed to the complex rupture process. At first, earthquakes were initiated by thrust motions. Later, the rupture pattern changed to strike-slip motions. Variations in slip may reflect the fault geometry or rupture boundary conditions in the region. The observed stress patterns are considered to relate not only to the regional collision and mountain-building processes, but also to active faults in local structures.
机译:利用1990年12月至1991年1月的花莲主震-余震序列,研究台湾东部花莲地区的地震活动性,活动断层,应力模式和复杂的破裂过程。由区域地震台网(台湾遥测地震台网,TTSN)和密集余震监测阵列(华莲临时地震台网,HTSN)的观测数据汇编而成的组合数据集提供了高质量的地震数据。利用这些数据,联合震源确定(JHD)和双差重定位方法可以很好地约束地震震源参数。这两种搬迁方法显示出相似的结果,并且改进了对地震位置的估计。由JHD确定的台站校正显示,越梅断层横向速度有明显变化。重新定位的地震活动表明,先前已知的活动断层-奇美断层一直延伸到近海。地震搬迁还揭示了西北倾角地震活动,可能与奇美断裂有关。另外,提出了三套震源机制解,它们的差异归因于复杂的破裂过程。起初,地震是由推力运动引起的。后来,破裂模式变为走滑运动。滑移的变化可能反映该地区的断层几何形状或破裂边界条件。观察到的应力模式不仅被认为与区域碰撞和山区建造过程有关,而且与局部结构中的活动断层有关。

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