IMPROVED APPLICABILITY OF RAY TRACING IN SEISMIC ACQUISITION, IMAGING, AND INTERPRETATION

dc.contributor.authorGjøystdal H.
dc.contributor.authorIversen E.
dc.contributor.authorLecomte I.
dc.contributor.authorKaschwich T.
dc.contributor.authorDrottning Å.
dc.contributor.authorMispel J.
dc.date.accessioned2026-08-01T08:04:07Z
dc.date.issued2007
dc.description.abstractRay-based seismic modeling methods can be applied at vari-ous stages of the exploration and production process. The stan-dard ray method has several advantages, e.g., computational effi-ciency and the possibility of simulating propagation of elementa-ry waves. As a high-frequency approximation, the method also has a number of limitations, particularly with respect to a lack of amplitude reliability in the presence of rapid changes of the mod-el functions representing elastic parameters and interfaces. Giv-en the objective of improving the applicability of the standard ray method, we present a strategy that does not require specific ex-tension to finite frequencies. Instead, we define each ray-based process as an element of a system that, as a composite process, is able to obtain better results than the ray-based process applied alone. Other elements of the composite process can be finite-difference modeling or numerical solutions for surface and vol-ume integrals, which are basic constituents of Kirchhoff model-ing and imaging. We also include among the process elements re-cently developed techniques for simulating the migration ampli-tude on a target reflector and in a local volume, e.g., a reservoir zone. The model is decomposed according to its complexity into volume elements, surface elements, or a combination. The com-posite process consists of a specified interaction between process elements and model elements, which fits well with the philoso-phy of modern software design. Model elements that will be ex-posed to ray-tracing algorithms may need appropriate prepara-tion, e.g., smoothing and resampling. We demonstrate specifical-ly, in a tutorial example, that simulating the seismic response from a reflector by ray-based composite processes can yield bet-ter results than applying standard ray tracing alone.
dc.identifierhttps://elibrary.ru/item.asp?id=31358042
dc.identifier.citationGeophysics, 2007, 72, 5, SM261-SM271
dc.identifier.doi10.1190/1.2736515
dc.identifier.issn0016-8033
dc.identifier.urihttps://repository.geologyscience.ru/handle/123456789/53799
dc.titleIMPROVED APPLICABILITY OF RAY TRACING IN SEISMIC ACQUISITION, IMAGING, AND INTERPRETATION
dc.typeСтатья

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