Piezomagnetic In-situ Stress Monitoring and its Application in the Longmenshan Fault Zone附视频

被引:0
作者
ZHANG Chongyuan [1 ,2 ]
WU Manlu [1 ,2 ]
CHEN Qunce [1 ,2 ]
LIAO Chunting [1 ,2 ]
机构
[1] Key Laboratory of Neotectonic Movement and Geohazard of Ministry of Land and Resources
[2] Institute of Geomechanics,Chinese Academy of Geological
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中图分类号
P315.7 [地震观测预报];
学科分类号
摘要
The relative change of in-situ stress is an inevitable outcome of differential movement among the crust plates. Conversely, changes of in-situ stress can also lead to deformation and instability of crustal rock mass, trigger activity of faults, and induce earthquakes. Hence, monitoring real-time change of in-situ stress is of great significance. Piezomagnetic in-situ stress monitoring has good and longtime applications in large engineering constructions and geoscience study fields in China. In this paper, the new piezomagnetic in-situ stress monitoring system is introduced and it not only has overall improvements in measuring cell's structure and property, stressing and orienting way, but also enhances integration and intelligence of control and data transmission system, in general, which greatly promotes installing efficiency of measuring probe and quality of monitoring data. This paper also discusses the responses of new piezomagnetic system in large earthquake events of in-situ stress monitoring station at Qiaoqi of Baoxing and Wenxian of Gansu. The monitoring data reflect adjustments and changes of tectonic stress field at the southwestern segment of and the northern area near the Longmenshan fault zone, which shows that the new system has a good performance and application prospect in the geoscience field. Data of the Qiaoqi stress-monitoring station manifest that the Lushan Earthquake did not release stress of the southwestern segment of the Longmenshan fault zone adequately and there still probably exists seismic risk in this region in the future. Combined with absolute in-situ stress measurement, carrying out long-term in-situ stress monitoring in typical tectonic position of important regions is of great importance for researchers to assess and study regional crust stability.
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页码:1592 / 1602
页数:11
相关论文
共 31 条
[1]   甘肃东南地区构造活动与2013年岷县—漳县MS6.6级地震孕震机制 [J].
郑文俊 ;
袁道阳 ;
何文贵 ;
闵伟 ;
任治坤 ;
刘兴旺 ;
王爱国 ;
许冲 ;
葛伟鹏 ;
李峰 .
地球物理学报, 2013, 56 (12) :4058-4071
[2]   金川三矿地应力测量及应力状态特征研究 [J].
张重远 ;
吴满路 ;
廖椿庭 .
岩土力学, 2013, 34 (11) :3254-3260
[3]  
龙门山北部陕甘川交界三角构造区断裂活动特征研究[J] 杜建军;马寅生;尹成明;龚明权; 地震学报 2013, 04
[4]  
Stress changes on major faults caused by 2013 Lushan earthquake and its relationship with 2008 Wenchuan earthquake[J] SHAN Bin;XIONG Xiong;ZHENG Yong;JIN BiKai;LIU ChengLi;XIE ZhuJun;HSU HouTze; Science China(Earth Sciences) 2013, 07
[5]   汶川MS8.0地震后龙门山裂断带地应力状态研究 [J].
吴满路 ;
张岳桥 ;
廖椿庭 ;
陈群策 ;
马寅生 ;
丰成君 ;
张重远 ;
严君凤 ;
吴金生 .
地球物理学进展, 2013, 28 (03) :1122-1130
[6]  
Seismogenic Structure of the April 20; 2013; Lushan Ms7 Earthquake in Sichuan[J] ZHANG Yueqiao;DONG Shuwen;HOU Chuntang;SHI Jusong;WU Zhonghai;LI Hailong;SUN Ping;LIU Gang;LI Jian; Acta Geologica Sinica(English Edition) 2013, 03
[7]  
Geohazards Induced by the Lushan Ms7.0 Earthquake in Sichuan Province; Southwest China:Typical Examples; Types and Distributional Characteristics[J] ZHANG Yongshuang;DONG Shuwen;HOU Chuntang;GUO Changbao;YAO Xin;LI Bin;DU Jianjun;ZHANG Jiagui; Acta Geologica Sinica(English Edition) 2013, 03
[8]   龙门山断裂带南段应力状态与强震危险性研究 [J].
易桂喜 ;
闻学泽 ;
辛华 ;
乔慧珍 ;
王思维 ;
宫悦 .
地球物理学报, 2013, 56 (04) :1112-1120
[9]   2013年4月20日四川芦山M7.0级地震介绍 [J].
刘杰 ;
易桂喜 ;
张致伟 ;
官致君 ;
阮祥 ;
龙锋 ;
杜方 .
地球物理学报, 2013, 56 (04) :1404-1407
[10]   龙门山断裂带西南段现今地应力状态与地震危险性分析 [J].
秦向辉 ;
陈群策 ;
谭成轩 ;
安其美 ;
吴满路 ;
丰成君 .
岩石力学与工程学报, 2013, 32(S1) (S1) :2870-2876