Analysis of broadband records from the 28 June 1992 Big Bear earthquake: Evidence of a multiple-event source
- 1 June 1995
- journal article
- Published by Seismological Society of America (SSA) in Bulletin of the Seismological Society of America
- Vol. 85 (3) , 688-704
- https://doi.org/10.1785/bssa0850030688
Abstract
The 28 June 1992 Big Bear earthquake occurred at 15:05:21 GMT and is considered to be an aftershock of the earlier Mw = 7.3 Landers earthquake. From overall aftershock locations and long-period focal studies, rupture is generally assumed to have propagated northeast. No surface rupture was found, however, and the mainshock locations determined from both strong motion and TERRAscope data are mutually consistent and do not lie on the assumed fault plane. Further, directivity analysis of records from the TERRAscope array suggests significant short- and long-period energy propagating northwest along the presumed antithetic fault plane. This observation is supported by significant early aftershocks distributed along both the presumed rupture plane and the antithetic plane to the northwest. An empirical Green's function (eGf) approach using both the Mw = 5.2, 28 June 1992 14:43 GMT foreshock and the Mw = 5.0 17 August 1992 aftershock produces consistent results and suggests that the Big Bear event comprised at least two substantial subevents. From the eGf results, we infer that the second and possibly a third subevent occurred on the presumed (northeast striking) mainshock rupture surface, but that significant moment release occurred on the antithetic northwest striking surface. We present results from line-source fault modeling of broadband displacement recordings of the Big Bear mainshock, which indicate that a two-fault event is necessary to produce the observed waveforms. The limitations imposed by the mainshock location and directivity analysis require that the initial rupture be towards the northwest, striking 320°. This was followed approximately 4 sec later by bilateral rupture along a northeast-southwest fault that strikes 50° east of north.Keywords
This publication has 22 references indexed in Scilit:
- Southern surface rupture associated with the 1992 M7.4 Landers Earthquake: Did it all happen during the mainshock?Geophysical Research Letters, 1993
- Rupture process of the June 28, 1992 Big Bear EarthquakeGeophysical Research Letters, 1993
- Near-Field Investigations of the Landers Earthquake Sequence, April to July 1992Science, 1993
- Change in Failure Stress on the Southern San Andreas Fault System Caused by the 1992 Magnitude = 7.4 Landers EarthquakeScience, 1992
- Initial investigation of the Landers, California, Earthquake of 28 June 1992 using TERRAscopeGeophysical Research Letters, 1992
- Changes in State of Stress on the Southern San Andreas Fault Resulting from the California Earthquake Sequence of April to June 1992Science, 1992
- Changes in static stress on southern California faults after the 1992 Landers earthquakeNature, 1992
- Broadband modelling of regional seismograms: Imperial Valley to PasadenaGeophysical Journal International, 1992
- The 1984 Round Valley, California Earthquake SequenceGeophysical Journal International, 1988
- Source pulse enhancement by deconvolution of an empirical Green's functionGeophysical Research Letters, 1985