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Model-independent Travel-time Attributes for 2-D, Finite-offset Multicoverage Reflections
Authors:Y. Zhang  S. Bergler  M. Tygel  P. Hubral
Affiliation:Geophysikalisches Institut, Universit?t Karlsruhe, Hertzstr. 16, 76187 Karlsruhe, Germany., DE
Department of Applied Mathematics, State University of Campinas, 13081–970, SP, Brazil., BR
Abstract:— In this paper, we provide a 5-parameter stacking formula to transform 2-D prestack data into a particular common-offset section. This requires the knowledge of the near-surface velocity only and it is expected that ray theory holds to describe primary reflections. The earth model can be arbitrarily inhomogeneous. The new stacking approach can be viewed as a generalization of the 3-parameter common-reflection-surface (CRS) stack, by which 2-D multicoverage data are stacked into a simulated zero-offset section. The new 5-parameter formula can handle P-P, P-S and S-S reflections.
Keywords:
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