岩石中地震波速度和衰减的应力变化响应研究


Autoria(s): 郭梦秋
Contribuinte(s)

符力耘

Data(s)

21/05/2008

Resumo

Stress change is one of key factors in seismic nucleating and triggering; therefore for understanding and forecasting earthquakes, it is necessary to research on stress status and its changes in rocks. Propagating in underground structures, wave velocity and attenuation contain information on stress changes of the Earth’s interior. For a better understanding of relationship between seismic data and stress changes, modeling and ultrasonic test supply significant references. In this article, acoustoelastic theory is introduced to explain nonlinear elastic characteristics of rocks. Based on the acoustoelastic theory, a solid-fluid coupled model is given to calculate velocity under different stress for porous and liquid fulfilled rocks. Except for the stress-velocity relationship, effects of pore pressure induced stress changes on ultrasonic coda attenuation are also studied. Intrinsic attenuation quality factors are calculated for a comparison purpose. Finally, the relationship between elastic constants and stress changes is thoroughly investigated, a mixture model from two phases of Hooke media is introduced to explain the differences between dynamic and static moduli, a relation among wave length, wave velocities and elastic moduli considering dimension of microstructure, dimension and state of surface between phases is presented. The most important aspect of this work is exploring and establishing relationships between the seismic properties of rocks and changes of their stress conditions, which will have its application in earthquake forecast and seismic hazard.

Identificador

http://159.226.119.211/handle/311031/1334

http://www.irgrid.ac.cn/handle/1471x/174303

Idioma(s)

中文

Fonte

岩石中地震波速度和衰减的应力变化响应研究.郭梦秋[d].中国科学院地质与地球物理研究所,2008.20-25

Palavras-Chave #地震数据 #震源区应力改变 #声弹性理论 #弹性参数 #振幅衰减
Tipo

学位论文