Abstract
Pre-stack depth migration velocity analysis is one of the keys to influencing the imaging quality of pre-stack migration. In this paper we cover a residual curvature velocity analysis method on angle-domain common image gathers (ADCIGs) which can depict the relationship between incident angle and migration depth at imaging points and update the migration velocity. Differing from offset-domain common image gathers (ODCIGs), ADCIGs are not disturbed by the multi-path problem which contributes to imaging artifacts, thus influencing the velocity analysis. On the basis of horizontal layers, we derive the residual depth equation and also propose a velocity analysis workflow for velocity scanning. The tests to synthetic and field data prove the velocity analysis methods adopted in this paper are robust and valid.
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The study is supported by the National 863 Program (Grant No.2006AA06Z206, Sustained supported), the National Science and Technology Major Project (Grant No. 2008ZX05006-004), and SinoPec Group Marine Facies Research (Grant No. 08370502000410).
Zhang Kai, PhD, graduated from Tongji University and is now working at the workstation of geologic resource and geologic engineering at the China University of Petroleum and focusing on the imaging and velocity analysis of applied geophysics.
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Zhang, K., Li, ZC., Zeng, TS. et al. Residual curvature migration velocity analysis for angle domain common imaging gathers. Appl. Geophys. 7, 49–56 (2010). https://doi.org/10.1007/s11770-010-0006-1
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DOI: https://doi.org/10.1007/s11770-010-0006-1