Common Reflection Surface Analysis: Paraxial approximation for the time of flight of signals traveling in a 2D acoustic medium

dc.contributor.authorBonomi, Ernesto
dc.date.accessioned2014-04-11T10:12:27Z
dc.date.available2014-04-11T10:12:27Z
dc.date.issued2005-10
dc.descriptionA 6-hour lecture given at CRS4 in October 2005.IT
dc.description.abstractThis paper presents the derivation in the midpoint-offset domain of two formulae approximating, for a shot receiver pair, the time of flight of acoustic signals traveling in a 2D inhomogeneous medium. The first expression assumes a flat acquisition surface, while the second, which generalizes the first one, takes into account the topography of the ground. The problem is first solved in an auxiliary homogeneous medium; the resulting time of flight is then delayed to be accommodated to the final velocity macro-model.IT
dc.identifier.urihttp://hdl.handle.net/11050/798
dc.language.isoenIT
dc.subjectseismic imagingIT
dc.subjectcommon-reflection-surface stackIT
dc.subjectparabolic and hyperbolic traveltimesIT
dc.subject.een-cordisEEN CORDIS::FISICA E SCIENZE ESATTE::Scienze della terra ::Tettonica, sismologiaIT
dc.subject.een-cordisEEN CORDIS::FISICA E SCIENZE ESATTE::Matematica, statistica::Modellazione matematicaIT
dc.subject.programProgram::Energy and Environment::Imaging and Numerical Geophysics (ING)IT
dc.titleCommon Reflection Surface Analysis: Paraxial approximation for the time of flight of signals traveling in a 2D acoustic mediumIT
dc.typeReportIT
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