HR: 0830h
AN: S11C-0305 [PDF]
TI: A new Measuring Technique of Time Delay of Shear Waves and its Application in Northeastern
Japan
AU: * Lei, J
EM: leij@pku.edu.cn
AF: Dept. of Geophysics, School of Earth and Space Science,Peking University, Peking University,Beijing,
Beijing, B.J 100871
China
AU: Li, X
AF: Northwest Nuclear Technology Institute, Northwest Nuclear Technology Institute,Xi'an, Xi'an, S.X
710024
China
AU: Zhao, D
EM: Zhao@sci.ehime-u.ac.jp
AF: Dept. of Earth Science, Ehime University, Dept. of Earth Science, Ehime University, Matsuyama,
Matsuyama, Ehi 790-8577
Japan
AB:
In comparison with the measurement of shear wave polarization, measuring the time delay between fast and slow shear waves is
more inaccurate. What causes such a problem is the difficulty of identifying accurately the first motion of slow shear wave.
Among the various methods for its measurement, the majority neglect the non-orthogonal relation between P and S wave in
anisotropy. On the three-component seismograms by aperture network or local observation, the late arriving waves following P
wave has an obvious interference upon fast shear wave, while the first motion in slow shear wave is affected simultaneously
by the late arriving waves in P wave and fast shear wave. In anisotropic or heterogeneous medium, polarization relations
between P and S waves, between fast and slow shear waves are both non-orthogonal. These lead to the difficulty mentioned
above.
Based on the result of synthetic simulation in polarization vector of seismic body wave, the paper presents a theoretical
method which eliminates the mutual interference from each seismic phase upon the time delay between fast and slow waves in
shear wave on three-component seismograms. By applying the method in analyzing the hi-net data in north-eastern Japan, the
research shows an evident increase in the results of time delay between fast and slow shear waves. It also improves the
method of calculating shear wave windows.
DE: 7203 Body wave propagation
DE: 7209 Earthquake dynamics and mechanics
DE: 7215 Earthquake parameters
SC: Seismology [S]
MN: 2003 Fall Meeting