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Structural analysis and interpretation of the surface deformation associated with the Ning'er, Yunnan Province, China Ms6.4 earthquake of June 3, 2007

YANG Xiao-ping CHEN Li-chun MA Wen-tao CHEN Hui ZHOU Zhi LI Yan-feng XIE Ying-qing SHI Wei-hua CHANG Zu-feng

地震学报(英文版)2008,Vol.21Issue(2):170-180,11.
地震学报(英文版)2008,Vol.21Issue(2):170-180,11.

Structural analysis and interpretation of the surface deformation associated with the Ning'er, Yunnan Province, China Ms6.4 earthquake of June 3, 2007

Structural analysis and interpretation of the surface deformation associated with the Ning'er, Yunnan Province, China Ms6.4 earthquake of June 3, 2007

YANG Xiao-ping 1CHEN Li-chun 1MA Wen-tao 1CHEN Hui 2ZHOU Zhi 2LI Yan-feng 3XIE Ying-qing 2SHI Wei-hua 2CHANG Zu-feng2

作者信息

  • 1. Institute of Geology, China Earthquake Administration, Beijing 100029, China
  • 2. Earthquake Administration of Yunnan Province, Kunming 650041, China
  • 3. China Center for Earthquake Disaster Emergency and SAR, Beijing 100049, China
  • 折叠

摘要

Abstract

The seismogenic fault and the dynamic mechanism of the Ning'er, Yunnan Province Ms6.4 earthquake of June 3, 2007 are studied on the basis of the observation data of the surface fissures, sand blow and water eruption, land- slide and collapse associated with the earthquake, incorporating with the data of geologic structures, focal mecha- nism solutions and aftershock distribution for the earthquake area. The observation of the surface fissures reveals that the Banhai segment of the NW-trending Ning'er fault is dominated by fight-lateral strike-slip, while the NNE-trending fault is dominated by left-lateral strike-slip. The seismo-geologic hazards are concentrated mainly within a 330°-extending zone of 13.5 km in length and 4 km in width. The major axis of the isoseismal is also oriented in 330° direction, and the major axis of the seismic intensity VIII area is 13.5 km long. The focal mechanism solutions indicate that the NW-trending nodal plane of the Ning'er Ms6.4 earthquake is dominated by fight-lateral slip, while the NE-trending nodal plane is dominated by left-lateral slip. The preferred distribution orientation of the aftershocks of MS≥2 is 330°, and the focal depths are within the range of 3~12 kin, predominantly within 3~10 km. The distribution of the aftershocks is consistent with the distribution zone of the seismo-geologic hazards. All the above-mentioned data indicate that the Banhai segment of the Ning'er fault is the seismogenic fault of this earthquake. Moreover, the driving force of the Ning'er earthquake is discussed in the fight of the active block theory. It is believed that the northward pushing of the Indian plate has caused the eastward slipping of the Qinghai-Tibetan Plateau, which has been transformed into the southeastern-southernward squeezing of the southwest Yunnan region. As a result, the NW-trending faults in the vicinity of the Ning'er area are dominated by fight-lateral strike-slip, while the NE-trending faults are dominated by left-lateral strike-slip. This tectonic framework might be the main cause of the frequent occurrence of MS6.0~6.9 earthquakes in the area.

关键词

Ning'er earthquake/ surface deformation/ seismogenic fault/ dynamics

Key words

Ning'er earthquake/ surface deformation/ seismogenic fault/ dynamics

分类

天文与地球科学

引用本文复制引用

YANG Xiao-ping,CHEN Li-chun,MA Wen-tao,CHEN Hui,ZHOU Zhi,LI Yan-feng,XIE Ying-qing,SHI Wei-hua,CHANG Zu-feng..Structural analysis and interpretation of the surface deformation associated with the Ning'er, Yunnan Province, China Ms6.4 earthquake of June 3, 2007[J].地震学报(英文版),2008,21(2):170-180,11.

基金项目

National Natural Science Foundation of China (40572126) and Contingency Funds from China Earthquake Admini- stration. (40572126)

地震学报(英文版)

1000-9116

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