SEISMIC COUPLING ALONG THE CHILEAN SUBDUCTION ZONE

被引:107
作者
TICHELAAR, BW
RUFF, LJ
机构
来源
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS | 1991年 / 96卷 / B7期
关键词
D O I
10.1029/91JB00200
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Underthrusting at subduction zones can cause large earthquakes at shallow depths but is accommodated by aseismic creep below a certain depth. The maximum depth of the seismically coupled zone (or seismogenic zone) is a transition from unstable to stable sliding. We have determined the maximum depth of the coupled zone and its variability along the Chilean subduction zone. The maximum depth of seismic coupling is defined by the depth of large (M > 6) underthrusting earthquakes that have occurred at the downdip edge of the coupled plate interface. Earthquake depth is determined with omnilinear waveform inversion of long-period P waves. The statistical uncertainty in the depth is estimated using bootstrapping. Omnilinear inversion formally accounts for the scaling incompatibility between the P waveforms and decreases the uncertainty in the depth estimate. We have found the depths of 27 earthquakes in the time period from 1961 to 1987. Seismic coupling in Chile extends down to 48-53 km. There is a resolvable change in the maximum depth of coupling around 28-degrees-S. The region immediately north of this latitude has a coupled zone that extends no deeper than 36-41 km, while south of this latitude coupling extends down to 48-53 km. This transition is not simply related to the oceanic lithospheric age and plate convergence rate but coincides with a change in several geophysical and geological phenomena. With respect to shallower (north) and deeper (south) coupling there is a change from active volcanos to no volcanos, the dip of the deep slab changes from steep to shallow, the thickness of trench sediments changes from thin to thick, and the depth of the oceanic basement changes from deeper to shallower at 28-degrees-S. Due to the multiplicity of changes at 28-degrees-S there is no clear unique interpretation of what physical mechanism controls the variability in the maximum depth of the seismically coupled zone in Chile.
引用
收藏
页码:11997 / 12022
页数:26
相关论文
共 64 条
[1]  
[Anonymous], 1981, MECH BEHAV CRUSTAL R, DOI DOI 10.1029/GM024P0103
[2]  
BARAZANGI M, 1976, GEOLOGY, V4, P686, DOI 10.1130/0091-7613(1976)4<686:SDOEAS>2.0.CO
[3]  
2
[4]   TRANSFORM-FAULT EARTHQUAKES IN THE NORTH-ATLANTIC - SOURCE MECHANISM AND DEPTH OF FAULTING [J].
BERGMAN, EA ;
SOLOMON, SC .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1988, 93 (B8) :9027-9057
[5]   LOCI AND MAXIMUM SIZE OF THRUST EARTHQUAKES AND THE MECHANICS OF THE SHALLOW REGION OF SUBDUCTION ZONES [J].
BYRNE, DE ;
DAVIS, DM ;
SYKES, LR .
TECTONICS, 1988, 7 (04) :833-857
[6]   FOCAL DEPTHS OF INTRACONTINENTAL AND INTRAPLATE EARTHQUAKES AND THEIR IMPLICATIONS FOR THE THERMAL AND MECHANICAL-PROPERTIES OF THE LITHOSPHERE [J].
CHEN, WP ;
MOLNAR, P .
JOURNAL OF GEOPHYSICAL RESEARCH, 1983, 88 (NB5) :4183-4214
[7]   ACCURATE SOURCE DEPTHS AND FOCAL MECHANISMS OF SHALLOW EARTHQUAKES IN WESTERN SOUTH-AMERICA AND IN THE NEW HEBRIDES ISLAND-ARC [J].
CHINN, DS ;
ISACKS, BL .
TECTONICS, 1983, 2 (06) :529-563
[8]   RUPTURE PROCESS OF AN EXTENDED EARTHQUAKE SEQUENCE - TELESEISMIC ANALYSIS OF THE CHILEAN EARTHQUAKE OF MARCH 3, 1985 [J].
CHOY, GL ;
DEWEY, JW .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1988, 93 (B2) :1103-1118
[9]  
CHRISTENSEN DH, 1985, B SEISMOL SOC AM, V75, P1637
[10]   RUPTURE PROCESS OF THE MARCH 3, 1985 CHILEAN EARTHQUAKE [J].
CHRISTENSEN, DH ;
RUFF, LJ .
GEOPHYSICAL RESEARCH LETTERS, 1986, 13 (08) :721-724