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Multiscale reflection phase inversion with migration deconvolution

delete2020-01-01
delete17
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OA
AI
Y
Yuqing Chen *
Z
Zongcai Feng
L
Lei Fu
A
Abdullah AlTheyab
S
Shihang Feng
G
Gerard Schuster
DOI:10.1190/GEO2018-0751.1delete
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Abstract

Abstract

En 中文
Reflection full-waveform inversion (RFWI) can recover the low-wavenumber components of the velocity model along with the reflection wavepaths. However, this requires an expensive least-squares reverse time migration (LSRTM) to construct the perturbation image that can still suffer from cycle-skipping problems. As an inexpensive alternative to LSRTM, we use migration deconvolution (MD) with RFWI. To mitigate cycle-skipping problems, we develop a multiscale reflection phase inversion (MRPI) strategy that boosts the low-frequency data and should only explain the phase information in the recorded data, not its magnitude spectrum. We also use the rolling-offset strategy that gradually extends the offset range of data with an increasing number of iterations. Numerical results indicate that the MRPI + MD method can efficiently recover the low-wavenumber components of the velocity model and is less prone to getting stuck in local minima compared to conventional RFWI.
Keywords:
WAVE-FORM INVERSION
EQUATION TRAVEL-TIME
GAUSS-NEWTON
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Journal

Geophysics cover
Geophysics
IF:
3.2
Papers:
8.4K
Citations:
3.3W

Organization

K
king abdullah university of science & technology
Scholars:
1.3W
Papers: 1.3W
Citations: 32