Basin-centered asperities in great subduction zone earthquakes: A link between slip, subsidence, and subduction erosion? art. no. 2507

被引:219
作者
Wells, RE
Blakely, RJ
Sugiyama, Y
Scholl, DW
Dinterman, PA
机构
[1] US Geol Survey, Menlo Pk, CA 94025 USA
[2] Natl Inst Adv Ind Sci & Technol, Geol Survey Japan, Tsukuba, Ibaraki 3058567, Japan
关键词
earthquake; subduction; forearc basin; coseismic slip; asperities; gravity; bathymetry; subsidence; subduction erosion;
D O I
10.1029/2002JB002072
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
[1] Published areas of high coseismic slip, or asperities, for 29 of the largest Circum-Pacific megathrust earthquakes are compared to forearc structure revealed by satellite free-air gravity, bathymetry, and seismic profiling. On average, 71% of an earthquake's seismic moment and 79% of its asperity area occur beneath the prominent gravity low outlining the deep-sea terrace; 57% of an earthquake's asperity area, on average, occurs beneath the forearc basins that lie within the deep-sea terrace. In SW Japan, slip in the 1923, 1944, 1946, and 1968 earthquakes was largely centered beneath five forearc basins whose landward edge overlies the 350 degreesC isotherm on the plate boundary, the inferred downdip limit of the locked zone. Basin-centered coseismic slip also occurred along the Aleutian, Mexico, Peru, and Chile subduction zones but was ambiguous for the great 1964 Alaska earthquake. Beneath intrabasin structural highs, seismic slip tends to be lower, possibly due to higher temperatures and fluid pressures. Kilometers of late Cenozoic subsidence and crustal thinning above some of the source zones are indicated by seismic profiling and drilling and are thought to be caused by basal subduction erosion. The deep-sea terraces and basins may evolve not just by growth of the outer arc high but also by interseismic subsidence not recovered during earthquakes. Basin-centered asperities could indicate a link between subsidence, subduction erosion, and seismogenesis. Whatever the cause, forearc basins may be useful indicators of long-term seismic moment release. The source zone for Cascadia's 1700 A. D. earthquake contains five large, basin-centered gravity lows that may indicate potential asperities at depth. The gravity gradient marking the inferred downdip limit to large coseismic slip lies offshore, except in northwestern Washington, where the low extends landward beneath the coast. Transverse gravity highs between the basins suggest that the margin is seismically segmented and could produce a variety of large earthquakes.
引用
收藏
页数:30
相关论文
共 141 条
[41]   A COMPARISON OF THE SPATIO-TEMPORAL DISTRIBUTION OF MOMENT RELEASE FOR THE 1986 ANDREANOF ISLANDS EARTHQUAKE WITH RELOCATED SEISMICITY [J].
HOUSTON, H ;
ENGDAHL, ER .
GEOPHYSICAL RESEARCH LETTERS, 1989, 16 (12) :1421-1424
[42]   THE RUPTURE ZONE OF CASCADIA GREAT EARTHQUAKES FROM CURRENT DEFORMATION AND THE THERMAL REGIME [J].
HYNDMAN, RD ;
WANG, K .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1995, 100 (B11) :22133-22154
[43]   THERMAL CONSTRAINTS ON THE SEISMOGENIC PORTION OF THE SOUTHWESTERN JAPAN SUBDUCTION THRUST [J].
HYNDMAN, RD ;
WANG, K ;
YAMANO, M .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1995, 100 (B8) :15373-15392
[44]  
Ishibashi K., 1998, J. Seismol Soc. Jpn, V50, P1, DOI [10.1016/0031-9201(86)90081-6, DOI 10.1016/0031-9201(86)90081-6, DOI 10.4294/ZISIN1948.50.APPENDIX_1]
[45]   Estimation of seismic moment and slip distribution of the April 1, 1946, Aleutian tsunami earthquake [J].
Johnson, JM ;
Satake, K .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1997, 102 (B6) :11765-11774
[46]   The 1964 Prince William Sound earthquake: Joint inversion of tsunami and geodetic data [J].
Johnson, JM ;
Satake, K ;
Holdahl, SR ;
Sauber, J .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1996, 101 (B1) :523-532
[47]   Asperity distribution of the 1952 great Kamchatka earthquake and its relation to future earthquake potential in Kamchatka [J].
Johnson, JM ;
Satake, K .
PURE AND APPLIED GEOPHYSICS, 1999, 154 (3-4) :541-553
[48]  
Johnson JM, 1996, B SEISMOL SOC AM, V86, P1229
[49]   RUPTURE EXTENT OF THE 1938 ALASKAN EARTHQUAKE AS INFERRED FROM TSUNAMI WAVE-FORMS [J].
JOHNSON, JM ;
SATAKE, K .
GEOPHYSICAL RESEARCH LETTERS, 1994, 21 (08) :733-736
[50]   THE 1957 GREAT ALEUTIAN EARTHQUAKE [J].
JOHNSON, JM ;
TANIOKA, Y ;
RUFF, LJ ;
SATAKE, K ;
KANAMORI, H ;
SYKES, LR .
PURE AND APPLIED GEOPHYSICS, 1994, 142 (01) :3-28