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Impending HRT wave precursors to the Wenchuan M_s8.0 earthquake and methods of earthquake impending prediction by using HRT wave 被引量:8
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作者 QIAN FuYe ZHAO BiRu +25 位作者 QIAN Wei ZHAO Jian HE ShiGen ZHANG HongKui LI ShiYu LI ShaoKun YAN GuLiang WANG ChengMin SUN ZhenKai ZHANG DongNing LU Jun ZHANG Ping YANG GuoJun SUN JiaLin GUO ChunSheng TANG YuXiong XU JianMing XIA KunTao JU Hang YIN BangHong LI Ming YANG DongSheng QI WeiLuo HE TaiMing GUAN HuaPing ZHAO YuLin 《Science China Earth Sciences》 SCIE EI CAS 2009年第10期1572-1584,共13页
We deployed four geo-electric monitoring stations in Sichuan and Yunnan provinces from 2004, using the new generation of equipment (PS-100) and technologies to capture the HRT wave earthquake precursor. Before the Wen... We deployed four geo-electric monitoring stations in Sichuan and Yunnan provinces from 2004, using the new generation of equipment (PS-100) and technologies to capture the HRT wave earthquake precursor. Before the Wenchuan Ms8.0 earthquake, we recorded the HRT wave precursor at the only operating station in Hongge (HG, Δ=465 km) and found that significant impending signal had been recorded at the station in the early morning ( 0―5 am) of 12th of May, 2008. The precursor for this earthquake is consistent with precursors recorded for other strong earthquakes. The measured physical properties (geo-resistivity and telluric-current) show tidal wave period oscillations from several days to several months before the earthquakes and the amplitude of such HT oscillation increases significantly towards the occurrence of an earthquake. These HT and RT waves from the epicenter have a causal relationship with the earthquakes that happened several days later. The arrival time of two RT waves is proportional to the distance from the station to the epicenter. The estimated natural decay of the amplitude is correlated with the natural period (T0) of the earthquake fault, which is proportional to the fault length. From this relationship, we can predict the earthquake magnitude. For magnitude 6―9 earthquakes, the natural period is about 1―6 hours. Such oscillation comes from the epicenter area and they can propagate several thousand kilometers in the Earth's crust. Before a strong earthquake in the shallow crust, the conductive pore fluid will experience major changes before the fault rapture. Such fluid change will emit an oscillation in the pore fluid pressure. This is the mechanism for the HRT wave generation. Since the China Earthquake Administration funded the HRT wave short-term earth-quake prediction project in 2003, the first record of HRT precursor wave has been recorded from the 2004-12-26 Sumatra Mw9.0 earthquake with the largest epicentre distance Δ=2900 km. Thereafter, we have captured HRT waves from more than 展开更多
关键词 WENCHUAN Ms8.0 EARTHQUAKE HRT WAVE (mechanism) model PS-100 geo-resistivity meter HRT WAVE precursor precursor consistency feasibility of short-term and impending EARTHQUAKE prediction
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地震的确定性前兆及观测方法
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作者 邱泽华 唐磊 赵树贤 《地震地磁观测与研究》 2021年第2期104-105,共2页
实验证明,岩石破裂前必然发生“声发射”,这为地震的确定性前兆研究提供了线索。但是,地震前兆的“声发射”与实验室岩石破裂前的声发射有类似之处,也有不同之处。钻孔应变仪记录到不少地震前异常变化,其中2008年汶川8.0级地震前约一年... 实验证明,岩石破裂前必然发生“声发射”,这为地震的确定性前兆研究提供了线索。但是,地震前兆的“声发射”与实验室岩石破裂前的声发射有类似之处,也有不同之处。钻孔应变仪记录到不少地震前异常变化,其中2008年汶川8.0级地震前约一年姑咱地震台YRY-4型钻孔应变仪记录的一系列“毛刺”异常较为典型。这些“毛刺”的时间分布和尺度分布特征与岩石破裂前的声发射相符,见图1。 展开更多
关键词 地震前兆 声发射 慢事件 四元件钻孔应变仪 不自洽
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