SEISMIC GUIDED-WAVES TRAPPED IN THE FAULT ZONE OF THE LANDERS, CALIFORNIA, EARTHQUAKE OF 1992

被引:176
作者
LI, YG [1 ]
AKI, K [1 ]
ADAMS, D [1 ]
HASEMI, A [1 ]
LEE, WHK [1 ]
机构
[1] US GEOL SURVEY, MENLO PK, CA 94025 USA
关键词
D O I
10.1029/94JB00464
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
A mobile seismic array of seven stations was deployed at 11 sites along the fault trace of the M7.4 Landers earthquake of June 28, 1992, with a maximum offset of 1 km from the trace. We found a distinct wave train with a relatively long period following the S waves that shows up only when both the stations and the events are close to the fault trace. This wave train is interpreted as a seismic guided wave trapped in a low-velocity fault zone. To study the distribution of amplitude of the guided waves with distance from the fault trace and also their attenuation with travel distance along the fault zone, we eliminated source and recording site effects by the coda normalization method. The normalized amplitudes of guided waves show a spectral peak at 3-4 Hz, which decays sharply with distance from the fault trace. Spectral amplitudes at high frequencies (8-15 Hz) show an opposite trend, increasing with distance from the fault trace. The normalized amplitudes of guided waves at 3-4 Hz also show a systematic decrease with hypocentral distance along the fault zone, from which we infer an apparent Q of 50. In order to confirm the existence of the guided waves, a dense array of 31 stations was deployed at one of the 11 sites. The resultant records revealed unequivocal evidence for the existence of guided waves associated with the fault zone. By modeling the waveforms as S waves trapped in a low-velocity waveguide sandwiched between two homogeneous half-spaces with velocity V(s) = 3.0 km/s, we infer a waveguide width of about 180 m, a shear velocity of 2.0-2.2 km/s, and a Q of approximately 50. Hypocenters of aftershocks with clear guided waves show a systematic distribution both laterally and with depth delineating the extent of the low-velocity fault zone in three dimensions. We find that the zone extends to a depth of at least 10 km. This zone apparently continues to the south across the Pinto Mountain fault because guided waves are observed at stations north of the Pinto Mountain fault for earthquakes with epicenters south of it. On the other hand, the zone appears to be discontinuous at the fault bend located about 20 km north of the mainshock epicenter; guided waves were observed for stations and epicenters which are located on the same sides of the fault bend but not for those on the opposite sides.
引用
收藏
页码:11705 / 11722
页数:18
相关论文
共 35 条
[1]   ANALYSIS OF SEISMIC CODA OF LOCAL EARTHQUAKES AS SCATTERED WAVES [J].
AKI, K .
JOURNAL OF GEOPHYSICAL RESEARCH, 1969, 74 (02) :615-+
[2]  
Aki K, 1980, QUANTITATIVE SEISMOL, V2
[3]   RAPID ESTIMATION OF RUPTURE DIRECTIVITY - APPLICATION TO THE 1992 LANDERS (MS=7.4) AND CAPE MENDOCINO (MS=7.2), CALIFORNIA EARTHQUAKES [J].
AMMON, CJ ;
VELASCO, AA ;
LAY, T .
GEOPHYSICAL RESEARCH LETTERS, 1993, 20 (02) :97-100
[4]  
ANDERSON JG, 1984, B SEISMOL SOC AM, V74, P1969
[5]  
BEN-ZION Y, 1990, B SEISMOL SOC AM, V80, P971
[6]   TECTONIC STRESS AND SPECTRA OF SEISMIC SHEAR WAVES FROM EARTHQUAKES [J].
BRUNE, JN .
JOURNAL OF GEOPHYSICAL RESEARCH, 1970, 75 (26) :4997-+
[7]  
CAMPILLO M, 1992, EOS, V73, P374
[8]  
CHIN BH, 1991, B SEISMOL SOC AM, V81, P1859
[9]  
CHOUET BA, 1976, THESIS MIT CAMBRIDGE
[10]  
DREGER DS, 1992, EOS, V73, P373