HR: 0800h
AN: S11B-0167 [Abstracts]
TI: Predicting Lg Coda Using Synthetic Seismograms and Media With Stochastic Heterogeneity
AU: * Tibuleac, I M
EM: ileana@westongeophysical.com
AF: Weston Geophysical Corporation, 57 Bedford Str., suite 102, Lexington, MA 02420
United States
AU: Stroujkova, A
EM: ana@westongeophysical.com
AF: Weston Geophysical Corporation, 57 Bedford Str., suite 102, Lexington, MA 02420
United States
AU: Bonner, J L
EM: bonner@westongeophysical.com
AF: Weston Geophysical Corporation, 57 Bedford Str., suite 102, Lexington, MA 02420
United States
AU: Mayeda, K
EM: kmayeda@llnl.gov
AF: Lawrence Livermore National Laboratory, 700 East Ave. MS L-205, Livermore, CA 94551
United States
AB:
Recent examinations of the characteristics of coda-derived Sn and Lg spectra for yield estimation have shown that the
spectral peak of Nevada Test Site (NTS) explosion spectra is depth-of-burial dependent, and that this peak is shifted to
higher frequencies for Lop Nor explosions at the same depths. To confidently use coda-based yield formulas, we need to
understand and predict coda spectral shape variations with depth, source media, velocity structure, topography, and
geological heterogeneity. We present results of a coda modeling study to predict Lg coda.
During the initial stages of this research, we have acquired and parameterized a deterministic 6 deg. x 6 deg. velocity and
attenuation model centered on the Nevada Test Site. Near-source data are used to constrain density and attenuation profiles
for the upper five km. The upper crust velocity profiles are quilted into a background velocity profile at depths greater
than five km. The model is parameterized for use in a modified version of the Generalized Fourier Method in two dimensions
(GFM2D).
We modify this model to include stochastic heterogeneities of varying correlation lengths within the crust. Correlation
length, Hurst number and fractional velocity perturbation of the heterogeneities are used to construct different realizations
of the random media. We use nuclear explosion and earthquake cluster waveform analysis, as well as well log and geological
information to constrain the stochastic parameters for a path between the NTS and the seismic stations near Mina, Nevada.
Using multiple runs, we quantify the effects of variations in the stochastic parameters, of heterogeneity location in the
crust and attenuation on coda amplitude and spectral characteristics. We calibrate these parameters by matching synthetic
earthquake Lg coda envelopes to coda envelopes of local earthquakes with well-defined moments and mechanisms.
We generate explosion synthetics for these calibrated deterministic and stochastic models. Secondary effects, including a
compensated linear vector dipole source, are superposed on the synthetics in order to adequately characterize the Lg
generation. We use this technique to characterize the effects of depth of burial on the coda spectral shapes.
DE: 7205 Continental crust (1219)
DE: 7219 Seismic monitoring and test-ban treaty verification
DE: 7290 Computational seismology
SC: Seismology [S]
MN: Fall Meeting 2005