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应用地球物理  2025, Vol. 22 Issue (3): 729-738    DOI: 10.1007/s11770-024-1122-7
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NLLoc定位方法评价及滦州4.3级地震发震构造分析
章阳,王晓山*,陈婷,吕国军,余海琳,陈俊霖,
(1. 河北红山巨厚沉积与地震灾害国家野外科学观测研究站,河北 邢台 054000;2. 河北省地震局,河北 石家庄 050021;3. 杭州晟初防震科技有限公司,浙江 杭州 310000
Evaluation of NLLoc positioning method and seismogenic structure analysis of Luanzhou MS 4.3 earthquake
Zhang Yang, Wang Xiao-Shan*, Chen Ting, Lv Guo-Jun, Yu Hai-lin, Chen Jun-lin
1. Hebei Hongshan National Observatory on Thick Sediments and Seismic Hazards, Xingtai 054000, Hebei, China; 2. Hebei Earthquake Agency, Shijiazhuang 050021, Hebei, China; 3. Hangzhou Shengchu Earthquake Prevention Technology Ltd, Hangzhou 310000, Zhejiang, China;
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摘要 NLLoc是一种非线性搜索定位方法,本文利用模拟到时数据,从到时拾取精度、台站分布和速度模型三方面定量评价NLLoc方法。结果显示NLLoc方法在到时拾取精度和台站分布方面定位精度和稳定性高,但对速度模型变化比较敏感,在速度模型比真实速度值偏小时定位精度较高。联合采用绝对定位和相对定位时,选择NLLoc方法先对地震数据进行绝对定位,再采用双差定位法对绝对定位后的结果进行相对定位,最终得到更精确的重定位结果。搜集2021年4月16日河北滦州MS4.3级地震密集台阵数据,联合多种方法对地震序列进行定位。利用重定位后的地震序列拟合断层面,最终得到滦州4.3级地震发震断层面走向208.5°,倾角87.2°。该断层面为走向NNE、倾向NW的高倾角断裂,进而推断此次地震的发震构造为卢龙断裂。
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关键词NLLoc方法   联合多种方法定位   滦州MS4.3级地震   发震构造   卢龙断裂     
Abstract: NLLoc is a nonlinear search positioning method. In this study, we use simulated arrival time data to quantitatively evaluate the NLLoc method from three aspects: arrival time picking accuracy, station distribution, and velocity model. The results show that the NLLoc method exhibits high positioning accuracy and stability in terms of arrival time picking accuracy and station distribution; however, it is sensitive to the velocity model. The positioning accuracy is higher when the velocity model is smaller than the true velocity. We combined absolute and relative positioning methods. First, we use the NLLoc method for absolute positioning of seismic data and then the double difference positioning method for relative positioning to obtain a more accurate relocation result. Furthermore, we used the combined method to locate the earthquake sequence after collecting dense seismic array data on the Luanzhou MS 4.3 earthquake that occurred on April 16, 2021, in Hebei Province. By fi tting the fault plane with the relocated earthquake sequences, the results show that the strike and dip angles of the seismogenic fault of the Luanzhou MS 4.3 earthquake are 208.5° and 85.6°, respectively. This indicates a high-dip angle fault with North–North–East strike and North–West dip directions. Furthermore, we infer that the seismogenic fault of the Luanzhou MS 4.3 earthquake is the Lulong fault.
Key wordsNLLoc method    Combined multiple positioning methods    Luanzhou MS 4.3 earthquake    Seismogenic structure    Lulong fault   
收稿日期: 2023-11-11;
基金资助:Supported by the Foundation: This research project is jointly supported by Hebei Provincial Science and Technology Program (No.22375406D) and The Earthquake Science and Technology Program of Hebei Province (No. DZ2023120500009, DZ2024120500001).
通讯作者: Wang Xiao-Shan (wxs@eqhe.ac.cn).     E-mail: wxs@eqhe.ac.cn
作者简介: Zhang Yang, master's degree, Engineer. His main interests are digital seismology and seismic stress field.
引用本文:   
. NLLoc定位方法评价及滦州4.3级地震发震构造分析[J]. 应用地球物理, 2025, 22(3): 729-738.
. Evaluation of NLLoc positioning method and seismogenic structure analysis of Luanzhou MS 4.3 earthquake[J]. APPLIED GEOPHYSICS, 2025, 22(3): 729-738.
 
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[1] 张帆,韩晓明,裴东洋,*,崔丰智,白沂杭,杨晓忠,. 基于机器学习的2015年阿拉善左旗5.8级地震序列分析[J]. 应用地球物理, 2025, 22(3): 711-728.
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