Arid
DOI10.1029/94JB02944
COSEISMIC FAULT SLIP ASSOCIATED WITH THE 1992 M(W)-6.1 JOSHUA-TREE, CALIFORNIA, EARTHQUAKE - IMPLICATIONS FOR THE JOSHUA-TREE LANDERS EARTHQUAKE SEQUENCE
BENNETT, RA; REILINGER, RE; RODI, W; LI, YP; TOKSOZ, MN; HUDNUT, K
通讯作者BENNETT, RA
来源期刊JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH
ISSN2169-9313
EISSN2169-9356
出版年1995
卷号100期号:B4页码:6443-6461
英文摘要

Coseismic surface deformation associated with the M(w) 6.1, April 23, 1992, Joshua Tree earthquake is well represented by estimates of geodetic monument displacements at 20 locations independently derived from Global Positioning System and trilateration measurements. The rms signal to noise ratio for these inferred displacements is 1.8 with near-fault displacement estimates exceeding 40 mm. In order to determine the long-wavelength distribution of slip over the plane of rupture, a Tikhonov regularization operator is applied to these estimates which minimizes stress variability subject to purely right-lateral slip and zero surface slip constraints. The resulting slip distribution yields a geodetic moment estimate of 1.7x10(18) N m with corresponding maximum slip around 0.8 m and compares well with independent and complementary information including seismic moment and source time function estimates and main shock and aftershock locations. From empirical Green’s function analyses, a rupture duration of 5 s is obtained which implies a rupture radius of 6-8 km. Most of the inferred slip lies to the north of the hypocenter, consistent with northward rupture propagation. Stress drop estimates are in the range of 2-4 MPa. In addition, predicted Coulomb stress increases correlate remarkably well with the distribution of aftershock hypocenters; most of the aftershocks occur in areas for which the mainshock rupture produced stress increases larger than about 0.1 MPa. In contrast, predicted stress changes are near zero at the hypocenter of the M(w) 7.3, June 28, 1992, Landers earthquake which nucleated about 20 km beyond the northernmost edge of the Joshua Tree rupture. Based on aftershock migrations and the predicted static stress field, we speculate that redistribution of Joshua Tree-induced stress perturbations played a role in the spatio-temporal development of the earthquake sequence culminating in the Landers event.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:A1995QT24800037
WOS关键词SAN-ANDREAS FAULT ; LAYERED HALF-SPACE ; SOUTHERN-CALIFORNIA ; BORAH PEAK ; ELASTIC DISLOCATIONS ; CRUSTAL DEFORMATION ; EASTERN CALIFORNIA ; MOJAVE-DESERT ; SHEAR ZONE ; INVERSION
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
来源机构United States Geological Survey
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/131641
作者单位(1)US GEOL SURVEY, PASADENA, CA 91106 USA
推荐引用方式
GB/T 7714
BENNETT, RA,REILINGER, RE,RODI, W,et al. COSEISMIC FAULT SLIP ASSOCIATED WITH THE 1992 M(W)-6.1 JOSHUA-TREE, CALIFORNIA, EARTHQUAKE - IMPLICATIONS FOR THE JOSHUA-TREE LANDERS EARTHQUAKE SEQUENCE[J]. United States Geological Survey,1995,100(B4):6443-6461.
APA BENNETT, RA,REILINGER, RE,RODI, W,LI, YP,TOKSOZ, MN,&HUDNUT, K.(1995).COSEISMIC FAULT SLIP ASSOCIATED WITH THE 1992 M(W)-6.1 JOSHUA-TREE, CALIFORNIA, EARTHQUAKE - IMPLICATIONS FOR THE JOSHUA-TREE LANDERS EARTHQUAKE SEQUENCE.JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH,100(B4),6443-6461.
MLA BENNETT, RA,et al."COSEISMIC FAULT SLIP ASSOCIATED WITH THE 1992 M(W)-6.1 JOSHUA-TREE, CALIFORNIA, EARTHQUAKE - IMPLICATIONS FOR THE JOSHUA-TREE LANDERS EARTHQUAKE SEQUENCE".JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH 100.B4(1995):6443-6461.
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