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Increasing Critical Sensitivity of the Load/Unload Response Ratio before Large Earthquakes with Identified Stress Acclumulation Pattern
Yu HZ(余怀忠); Shen ZK; Wan YG; Zhu QY; Yin XC; Yu, HZ (reprint author), China Earthquake Adm, State Key Lab Earthquake Dynam, Inst Geol, POB 9803, Beijing 100029, Peoples R China.
发表期刊Tectonophysics
2006
卷号428期号:1页码:87-94
ISSN0040-1951
摘要The Load/Unload Response Ratio (LURR) method is proposed for short-to-intermediate-term earthquake prediction [Yin, X.C., Chen, X.Z., Song, Z.P., Yin, C., 1995. A New Approach to Earthquake Prediction — The Load/Unload Response Ratio (LURR) Theory, Pure Appl. Geophys., 145, 701–715]. This method is based on measuring the ratio between Benioff strains released during the time periods of loading and unloading, corresponding to the Coulomb Failure Stress change induced by Earth tides on optimally oriented faults. According to the method, the LURR time series usually climb to an anomalously high peak prior to occurrence of a large earthquake. Previous studies have indicated that the size of critical seismogenic region selected for LURR measurements has great influence on the evaluation of LURR. In this study, we replace the circular region usually adopted in LURR practice with an area within which the tectonic stress change would mostly affect the Coulomb stress on a potential seismogenic fault of a future event. The Coulomb stress change before a hypothetical earthquake is calculated based on a simple back-slip dislocation model of the event. This new algorithm, by combining the LURR method with our choice of identified area with increased Coulomb stress, is devised to improve the sensitivity of LURR to measure criticality of stress accumulation before a large earthquake. Retrospective tests of this algorithm on four large earthquakes occurred in California over the last two decades show remarkable enhancement of the LURR precursory anomalies. For some strong events of lesser magnitudes occurred in the same neighborhoods and during the same time periods, significant anomalies are found if circular areas are used, and are not found if increased Coulomb stress areas are used for LURR data selection. The unique feature of this algorithm may provide stronger constraints on forecasts of the size and location of future large events.
学科领域力学
DOI10.1016/j.tecto.2006.09.006
收录类别SCI
语种英语
WOS记录号WOS:000242765100005
关键词[WOS]SOUTHERN CALIFORNIA ; STATIC STRESS ; 1992 LANDERS ; INTERNAL DEFORMATION ; LURR THEORY ; AEGEAN SEA ; M-W ; FAULT ; SEISMICITY ; SEQUENCE
WOS研究方向Geochemistry & Geophysics
WOS类目Geochemistry & Geophysics
引用统计
被引频次:18[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://dspace.imech.ac.cn/handle/311007/15959
专题力学所知识产出(1956-2008)
通讯作者Yu, HZ (reprint author), China Earthquake Adm, State Key Lab Earthquake Dynam, Inst Geol, POB 9803, Beijing 100029, Peoples R China.
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Yu HZ,Shen ZK,Wan YG,et al. Increasing Critical Sensitivity of the Load/Unload Response Ratio before Large Earthquakes with Identified Stress Acclumulation Pattern[J]. Tectonophysics,2006,428,1,:87-94.
APA 余怀忠,Shen ZK,Wan YG,Zhu QY,Yin XC,&Yu, HZ .(2006).Increasing Critical Sensitivity of the Load/Unload Response Ratio before Large Earthquakes with Identified Stress Acclumulation Pattern.Tectonophysics,428(1),87-94.
MLA 余怀忠,et al."Increasing Critical Sensitivity of the Load/Unload Response Ratio before Large Earthquakes with Identified Stress Acclumulation Pattern".Tectonophysics 428.1(2006):87-94.
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