Dynamically Focused Gaussian Beams for Seismic Imaging

An initial study is performed in which dynamically focused Gaussian beams are investigated for seismic imaging. Focused Gaussian beams away from the source and receiver plane allow the narrowest and planar portions of the beams to occur at the depth of a specific target structure. To match the seism...

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Main Author: Robert L. Nowack
Format: Article
Language:English
Published: Wiley 2011-01-01
Series:International Journal of Geophysics
Online Access:http://dx.doi.org/10.1155/2011/316581
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author Robert L. Nowack
author_facet Robert L. Nowack
author_sort Robert L. Nowack
collection DOAJ
description An initial study is performed in which dynamically focused Gaussian beams are investigated for seismic imaging. Focused Gaussian beams away from the source and receiver plane allow the narrowest and planar portions of the beams to occur at the depth of a specific target structure. To match the seismic data, quadratic phase corrections are required for the local slant stacks of the surface data. To provide additional control of the imaging process, dynamic focusing is investigated where all subsurface points are specified to have the same planar beam fronts. This gives the effect of using nondiffracting beams, but actually results from the use of multiple focusing depths for each Gaussian beam. However, now different local slant stacks must be performed depending on the position of the subsurface scattering point. To speed up the process, slant stacking of the local data windows is varied to match the focusing depths along individual beams when tracked back into the medium. The approach is tested with a simple model of 5-point scatterers which are then imaged with the data, and then to the imaging of a single dynamically focused beam for one shot gather computed from the Sigsbee2A model.
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spelling doaj-art-2e103496116c453a86dc5ecbaf4f89a62025-08-20T03:55:07ZengWileyInternational Journal of Geophysics1687-885X1687-88682011-01-01201110.1155/2011/316581316581Dynamically Focused Gaussian Beams for Seismic ImagingRobert L. Nowack0Department of Earth and Atmospheric Sciences, Purdue University, West Lafayette, IN 47907, USAAn initial study is performed in which dynamically focused Gaussian beams are investigated for seismic imaging. Focused Gaussian beams away from the source and receiver plane allow the narrowest and planar portions of the beams to occur at the depth of a specific target structure. To match the seismic data, quadratic phase corrections are required for the local slant stacks of the surface data. To provide additional control of the imaging process, dynamic focusing is investigated where all subsurface points are specified to have the same planar beam fronts. This gives the effect of using nondiffracting beams, but actually results from the use of multiple focusing depths for each Gaussian beam. However, now different local slant stacks must be performed depending on the position of the subsurface scattering point. To speed up the process, slant stacking of the local data windows is varied to match the focusing depths along individual beams when tracked back into the medium. The approach is tested with a simple model of 5-point scatterers which are then imaged with the data, and then to the imaging of a single dynamically focused beam for one shot gather computed from the Sigsbee2A model.http://dx.doi.org/10.1155/2011/316581
spellingShingle Robert L. Nowack
Dynamically Focused Gaussian Beams for Seismic Imaging
International Journal of Geophysics
title Dynamically Focused Gaussian Beams for Seismic Imaging
title_full Dynamically Focused Gaussian Beams for Seismic Imaging
title_fullStr Dynamically Focused Gaussian Beams for Seismic Imaging
title_full_unstemmed Dynamically Focused Gaussian Beams for Seismic Imaging
title_short Dynamically Focused Gaussian Beams for Seismic Imaging
title_sort dynamically focused gaussian beams for seismic imaging
url http://dx.doi.org/10.1155/2011/316581
work_keys_str_mv AT robertlnowack dynamicallyfocusedgaussianbeamsforseismicimaging