阎春恒,向巍,张清,等. 广西靖西MS5.2地震序列“重复地震”识别及定位精度评估[J]. 华北地震科学,2020, 38(S2):19-26. doi:10.3969/j.issn.1003−1375.2020.S2.004.
引用本文: 阎春恒,向巍,张清,等. 广西靖西MS5.2地震序列“重复地震”识别及定位精度评估[J]. 华北地震科学,2020, 38(S2):19-26. doi:10.3969/j.issn.1003−1375.2020.S2.004.
YAN Chunheng,XIANG Wei,ZHANG Qing,et al. Recognition of Repeating Earthquakes in Jingxi MS5.2 Earthquake Sequence and Its Application in Location Evaluation of Digital Seismic Network[J]. North China Earthquake Sciences,2020, 38(S2):19-26. doi:10.3969/j.issn.1003−1375.2020.S2.004.
Citation: YAN Chunheng,XIANG Wei,ZHANG Qing,et al. Recognition of Repeating Earthquakes in Jingxi MS5.2 Earthquake Sequence and Its Application in Location Evaluation of Digital Seismic Network[J]. North China Earthquake Sciences,2020, 38(S2):19-26. doi:10.3969/j.issn.1003−1375.2020.S2.004.

广西靖西MS5.2地震序列“重复地震”识别及定位精度评估

Recognition of Repeating Earthquakes in Jingxi MS5.2 Earthquake Sequence and Its Application in Location Evaluation of Digital Seismic Network

  • 摘要: 波形相关意义的“重复地震”在自然界中普遍存在,并已被广泛应用于检测地壳介质性质变化、评估地震台网的地震定位精度、地震“复发”和断层深部滑动速率的估算等方面。利用波形互相关技术识别靖西MS5.2地震序列中的“重复地震”,共获得由40个地震组成的15组“重复地震”对。将筛选出的“重复地震”对用于定量判断地震目录中的震相拾取误差和评估台网定位精度,结果显示:广西地震台网对靖西地区地震定位的水平误差约为3 km,定位误差主要由台站空间分布不均匀和地壳速度结构模型不够精确引起。基于hyp2000定位和波形互相关技术的双差定位方法重新定位的结果精度明显提高,水平误差和深度误差均小于2.3 km,重新定位结果可作为靖西MS5.2地震活动图像研究的重要基础资料。

     

    Abstract: ‘Repeating earthquakes’ identified by waveform cross-correlation technology is common in nature, and have been widely used to detect the change of crustal medium properties, assess the location accuracy of the network and estimate fault slip rates at depth or earthquake recurrence. In this paper, the waveform cross-correlation technique is used to identify ‘repeating earthquakes’ in the Jingxi MS5.2 earthquake sequence, and a total of 15 pairs of ‘repeating earthquakes’ are obtained, which include 40 independent seismic events. The selected ‘repeating earthquake’ pairs are used to quantitatively judge the phase picking error in the earthquake catalog and to evaluate the location accuracy of the Guangxi digital seismic network. The results show that the horizontal error of seismic parameters in Jingxi region location by the Guangxi digital seismic network is about 3 km, and the positioning error is mainly caused by the uneven spatial distribution of stations and the inaccurate crustal velocity structure model. The relocation accuracy of Jingxi MS5.2 earthquake sequence based on hyp2000 mathod and Double difference mathod with waveform cross-correlation technology are obviously improvement, and the horizontal error and depth error are both less than 2.3 km, which is useful and significant in the study of fine seismicity image of Jingxi MS5.2 earthquake.

     

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