HR: 1340h
AN: S33A-1072 [Abstracts]
TI: A Wave Equation Migration Method for Receiver Function Imaging
AU: * Chen, L
EM: lchen@mail.igcas.ac.cn
AF: Chinese Academy of Sciences, Institute of Geology and Geophysics, Beijing, 10029
China
AU: Wen, L
EM: Lianxing.Wen@sunysb.edu
AF: State University of New York at Stony Brook, Department of Geosciences, Stony Brook, NY 11794
United States
AU: Zheng, T
EM: tyzheng@mail.igcas.ac.cn
AF: Chinese Academy of Sciences, Institute of Geology and Geophysics, Beijing, 10029
China
AB:
A wave equation based poststack depth migration method is proposed to image the crustal and upper mantle structures using
teleseismic receiver functions. By utilizing a frequency-wavenumber domain one-way phase-screen propagator for wavefield
extrapolation in the migration scheme, the common conversion point (CCP) stacked receiver functions are backward propagated
to construct the subsurface structural images. Synthetic experiments demonstrate the validity of the migration method for a
variety of laterally heterogeneous models. The migrated images show considerable improvement over the CCP images in
recovering the structural features. The phase-screen propagator migration method proves to be particularly useful for imaging
complex structures and deep discontinuities overlain by strong shallow anomalies, because of its capability of handling
lateral velocity variations. Influences of several factors on the image quality of the poststack migration are further
investigated, including inter-station spacing, noise level of the data, velocity model used in migration, and earthquake
distribution (incident direction of source fields). Theoretical derivation and numerical results suggest that both the CCP
stacking and the poststack migration of receiver functions need to be designed in a target-oriented way for reliable and
efficient imaging, and special consideration on earthquake distribution is particularly required in designing seismic
experiments if structures of large dips are present. The proposed wav equation migration scheme is applied to image the
Earth's internal structures using a number of dense field data sets collected at many seismic arrays in Asia. The constructed
images reveal several interesting subsurface structures of the study regions and synthetic tests indicate that those
subsurface features are well resolved by the seismic data. Significant improvements of the image quality demonstrate the
great potential and flexibility of the proposed migration method for imaging the Earth's internal structures using seismic
data collected in the future dense passive seismic arrays, such as the USArray.
DE: 7260 Theory and modeling
DE: 7294 Instruments and techniques
DE: 7203 Body wave propagation
DE: 7218 Lithosphere and upper mantle
DE: 3260 Inverse theory
SC: Seismology [S]
MN: 2004 AGU Fall Meeting