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The offset-midpoint traveltime pyramid of P-waves in homogeneous orthorhombic media
Author(s) -
Qi Hao,
Alexey Stovas,
Tariq Alkhalifah
Publication year - 2016
Publication title -
geophysics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.178
H-Index - 172
eISSN - 1942-2156
pISSN - 0016-8033
DOI - 10.1190/geo2015-0352.1
Subject(s) - slowness , midpoint , orthorhombic crystal system , offset (computer science) , homogeneous , prestack , geology , geometry , mathematical analysis , anisotropy , diffraction , geodesy , mathematics , optics , physics , seismology , computer science , combinatorics , programming language
The offset-midpoint traveltime pyramid describes the diffraction traveltime of a point diffractor in homogeneous media. We have developed an analytic approximation for the P-wave offset-midpoint traveltime pyramid for homogeneous orthorhombic media. In this approximation, a perturbation method and the Shanks transform were implemented to derive the analytic expressions for the horizontal slowness components of P-waves in orthorhombic media. Numerical examples were shown to analyze the proposed traveltime pyramid formula and determined its accuracy and the application in calculating migration isochrones and reflection traveltime. The proposed offset-midpoint traveltime formula is useful for Kirchhoff prestack time migration and migration velocity analysis for orthorhombic media

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