Study on the physical meaning of seismic inhomogeneous degree by rock fracture experiments

It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes prior to strong earthquakes, indicating the state change of local seismic activity. This paper focuses on the mechanism for the abnormal changes of the G...

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Published inActa seismologica sinica Vol. 18; no. 6; pp. 732 - 740
Main Author 李志雄 马胜利 李圣强 李闽峰 路鹏 陈华静 王松 吴婷
Format Journal Article
LanguageEnglish
Published Beijing Springer Nature B.V 01.11.2005
Institute of Earthquake Science, China Earthquake Administration, Beijing 100036, China%State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing 100029, China%College of Disaster Prevention Techniques, Yanjiao 065201, China%China Seismic Network Center, Beijing 100036, China
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ISSN1674-4519
1000-9116
1867-8777
1993-1344
DOI10.1007/s11589-005-0101-1

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Abstract It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes prior to strong earthquakes, indicating the state change of local seismic activity. This paper focuses on the mechanism for the abnormal changes of the GL values based on the sequences of acoustic emission for three types of rock samples containing macro-asperity fracture; compressional en-echelon fracture and model-III shear fracture. The results show that for the three types of rock samples, there are continuous abnormal changes of GL value (>1) just before the non-elastic deformation occurs or during the process of nucleation prior to the instability. Based on the experimental results, it seems that the process of creep sliding and resistance-uniformization along fault zone is the possible mechanism for the abnormal changes of GL value before rock fractures.[PUBLICATION ABSTRACT]
AbstractList It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes prior to strong earthquakes, indicating the state change of local seismic activity. This paper focuses on the mechanism for the abnormal changes of the GL values based on the sequences of acoustic emission for three types of rock samples containing macro-asperity fracture; compressional en-echelon fracture and model-III shear fracture. The results show that for the three types of rock samples, there are continuous abnormal changes of GL value (>1) just before the non-elastic deformation occurs or during the process of nucleation prior to the instability. Based on the experimental results, it seems that the process of creep sliding and resistance-uniformization along fault zone is the possible mechanism for the abnormal changes of GL value before rock fractures.
It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes prior to strong earthquakes, indicating the state change of local seismic activity. This paper focuses on the mechanism for the abnormal changes of the GL values based on the sequences of acoustic emission for three types of rock samples containing macro-asperity fracture; compressional en-echelon fracture and model-III shear fracture. The results show that for the three types of rock samples, there are continuous abnormal changes of GL value (>1) just before the non-elastic deformation occurs or during the process of nucleation prior to the instability. Based on the experimental results, it seems that the process of creep sliding and resistance-uniformization along fault zone is the possible mechanism for the abnormal changes of GL value before rock fractures.[PUBLICATION ABSTRACT]
P315.61; It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes prior to strong earthquakes, indicating the state change of local seismic activity. This paper focuses on the mechanism for the abnormal changes of the GL values based on the sequences of acoustic emission for three types of rock samples containing macro-asperity fracture; compressional en-echelon fracture and model-III shear fracture. The results show that for the three types of rock samples, there are continuous abnormal changes of GL value (>1) just before the non-elastic deformation occurs or during the process of nucleation prior to the instability. Based on the experimental results, it seems that the process of creep sliding and resistance-uniformization along fault zone is the possible mechanism for the abnormal changes of GL value before rock fractures.
Author 李志雄 马胜利 李圣强 李闽峰 路鹏 陈华静 王松 吴婷
AuthorAffiliation Institute of Earthquake Science China Earthquake Administration Beijing 100036 China State Key Laboratory of Earthquake Dynamics Institute of Geology China Earthquake Administration Beijing 100029 China Institute of Earthquake Science China Earthquake Administration Beijing 100036 China College of Disaster Prevention Techniques Yanjiao 065201 China China Seismic Network Center Beijing 100036 China
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Cites_doi 10.1007/s11589-002-0033-y
10.1016/0148-9062(93)90041-B
10.1007/s11589-000-0079-7
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seismic inhomogeneous degree
rock fracture experiment
acoustic emission
non-elastic change
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LI Zhi-xiong 1) MA Sheng-li 2) LI Sheng-qiang1) LI Min-feng 1) LU Peng 3) CHEN Hua-jing 4) WANG Song 4) WU Ting 1)1) Institute of Earthquake Science, China Earthquake Administration, Beijing 100036, China 2) State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing 100029, China 3) College of Disaster Prevention Techniques, Yanjiao 065201, China 4) China Seismic Network Center, Beijing 100036, China
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Snippet It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes prior to...
P315.61; It is observed that the parameter of seismic inhomogeneous degree (GL value) calculated from the earthquake catalog shows obvious abnormal changes...
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SubjectTerms Acoustic emission
Creep (materials)
degree
Earthquakes
experim
Faults
fracture
Fracture mechanics
Fractures
inhomogeneous
Mathematical models
Nucleation
Rock
Rocks
seismic
Seismic activity
Seismic engineering
Seismic phenomena
Title Study on the physical meaning of seismic inhomogeneous degree by rock fracture experiments
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