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Computing near-surface velocity models for S-wave static corrections using raypath interferometry

delete2018-05-01
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PRE
AI
R
Raul Cova *
D
David C. Henley
K
K. A. Innanen
DOI:10.1190/GEO2017-0340.1delete
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摘要

摘要

En 中文
A near-surface velocity model is one of the typical products generated when computing static corrections, particularly in the processing of PP data. Critically refracted waves are the input usually needed for this process. In addition, for the converted PS mode, S-wave near-surface corrections must be applied at the receiver locations. In this case, however, critically refracted S-waves are difficult to identify when using P-wave energy sources. We use the tau-p representation of the converted-wave data to capture the intercept-time differences between receiver locations. These tau-differences are then used in the inversion of a near-surface S-wave velocity model. Our processing workflow provides not only a set of raypath-dependent S-wave static corrections, but also a velocity model that is based on those corrections. Our computed near-surface S-wave velocity model can be used for building migration velocity models or to initialize elastic full-waveform inversions. Our tests on synthetic and field data provided superior results to those obtained by using a surface-consistent solution.
Keyword:
FORM INVERSION
STACKING
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期刊

Geophysics 封面图
Geophysics
IF:
3.2
论文数:
8.4K
被引数:
3.3W

机构

U
University of Calgary
学者数:
3.8W
论文数: 3.3W
被引数: 52
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