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Study on Integrated Recurrence Behaviors of Strong Earthquakes Along Entire Active Fault Zones in the Sichuan-Yunnan Region, China
作者姓名:Yi Guixi  Wen Xueze  Xu Xiwei
作者单位:[1]ChengduUniversityofTechnology,Chengdu610059,China [2]SeismologicalBureauofSichuanProvince,Chengdu610041,China [3]InstituteofGeology,ChinaSeismologicalBureau,Beijing100029,China
基金项目:ThisprojectwassupportedbytheDevelopmentPlanoftheStateKeyFundamentalResearch (GrantNo .G19980 4 0 70 1) ,China .
摘    要:Based on historical earthquake data, we use statistical methods to study integrated recurrence behaviors of strong earthquakes along 7 selected active fault zones in the Sichuan-Yunnan region. The results show that recurrences of strong earthquakes in the 7 fault zones display near-random, random and clustering behaviors. The recurrence processes are never quasiperiodic, and are neither strength-time nor time-strength dependent. The more independent segments for strong earthquake rupturing a fault zone has, the more complicated the corresponding recurrence process is. And relatively active periods and quiescent periods for earthquake activity occur alternatively. Within the active periods, the distribution of recurrence time intervals between earthquakes has relatively large discretion, and can be modelled well by a Weibull distribution. The time distribution of the quiescent periods has relatively small discretion, and can be approximately described by some distributions as the normal. Both the durations of the active periods and the numbers of strong earthquakes within the active periods vary obviously cycle by cycle, leading to the relatively active periods having never repeated quasi-periodically. Therefore, the probabilistic assessment for middle- and longterm seismic hazard for entireties of active fault zones based on data of historical strong earthquakes on the fault zones still faces difficulty.

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Study on Integrated Recurrence Behaviors of Strong Earthquakes Along Entire Active Fault Zones in the Sichuan-Yunnan Region, China
Yi Guixi,Wen Xueze,Xu Xiwei.Study on Integrated Recurrence Behaviors of Strong Earthquakes Along Entire Active Fault Zones in the Sichuan-Yunnan Region, China[J].Earthquake Research in China,2003,17(2):145-159.
Authors:Yi Guixi  Wen Xueze and Xu Xiwei
Institution:Chengdu University of Technology, Chengdu 610059, China; Seismological Bureau of Siehuan Province, Chengdu 610041, China;Seismological Bureau of Siehuan Province, Chengdu 610041, China;Institute of Geology, China Seismological Bureau, Beijing 100029, China
Abstract:Based on historical earthquake data, we use statistical methods to study integrated recurrence behaviors of strong earthquakes along 7 selected active fault zones in the Sichuan-Yunnan region. The results show that recurrences of strong earthquakes in the 7 fault zones display near-random, random and clustering behaviors. The recurrence processes are never quasi-periodic, and are neither strength-time nor time-strength dependent. The more independent segments for strong earthquake rupturing a fault zone has, the more complicated the corresponding recurrence process is. And relatively active periods and quiescent periods for earthquake activity occur alternatively. Within the active periods, the distribution of recurrence time intervals between earthquakes has relatively large discretion, and can be modelled well by a Weibull distribution. The time distribution of the quiescent periods has relatively small discretion, and can be approximately described by some distributions as the normal. Both the durations of the active periods and the numbers of strong earthquakes within the active periods vary obviously cycle by cycle, leading to the relatively active periods having never repeated quasi-periodically. Therefore, the probabilistic assessment for middle- and long-term seismic hazard for entireties of active fault zones based on data of historical strong earthquakes on the fault zones still faces difficulty.
Keywords:Historical earthquake  Active fault zone  Recurrence interval  Probability distribution  The Sichuan-Yunnan region
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