HR: 09:45h
AN: S21A-08 [PDF]
TI: Is Seismically Determined Q an Intrinsic Material Property?
AU: * Langston, C A
EM: clangstn@memphis.edu
AF: Center for Earthquake Research and Information
University of Memphis, 3876 Central Ave., Suite 1, Memphis, TN 38152 United States
AB:
The seismic quality factor, Q, has a well-defined physical meaning as an intrinsic material property associated with a
visco-elastic or a non-linear stress-strain constitutive relation for a material. Measurement of Q from seismic waves,
however, involves interpreting seismic wave amplitude and phase as deviations from some ideal elastic wave propagation model.
Thus, assumptions in the elastic wave propagation model become the basis for attributing anelastic properties to the earth
continuum. Scientifically, the resulting Q model derived from seismic data is no more than a hypothesis that needs to be
verified by other independent experiments concerning the continuum constitutive law and through careful examination of the
truth of the assumptions in the wave propagation model. A case in point concerns the anelasticity of Mississippi embayment
sediments in the central U.S. that has important implications for evaluation of earthquake strong ground motions. Previous
body wave analyses using converted Sp phases have suggested that Qs is ~30 in the sediments based on simple ray theory
assumptions. However, detailed modeling of 1D heterogeneity in the sediments shows that Qs cannot be resolved by the Sp
data. An independent experiment concerning the amplitude decay of surface waves propagating in the sediments shows that Qs
must be generally greater than 80 but is also subject to scattering attenuation. Apparent Q effects seen in direct P and S
waves can also be produced by wave tunneling mechanisms in relatively simple 1D heterogeneity. Heterogeneity is a general
geophysical attribute of the earth as shown by many high-resolution data sets and should be used as the first litmus test on
assumptions made in seismic Q studies before a Q model can be interpreted as an intrinsic material property.
DE: 5144 Wave attenuation
DE: 7203 Body wave propagation
DE: 7255 Surface waves and free oscillations
DE: 7260 Theory and modeling
SC: Seismology [S]
MN: 2003 Fall Meeting