A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing

The Earth's subsurface is an anisotropic medium where the velocity of seismic waves alters in different propagation angles. Omitting anisotropy in seismic imaging not only brings mis-positioning of migrated dipping events but also fails to retain dipping energy during dip-moveout. To account...

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Main Author: S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, .
Format: Article
Published: 2015
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Online Access:http://iopscience.iop.org/article/10.1088/1755-1315/30/1/012007/meta
http://eprints.utp.edu.my/12258/
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Institution: Universiti Teknologi Petronas
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spelling my.utp.eprints.122582017-06-07T01:35:14Z A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, . QE Geology The Earth's subsurface is an anisotropic medium where the velocity of seismic waves alters in different propagation angles. Omitting anisotropy in seismic imaging not only brings mis-positioning of migrated dipping events but also fails to retain dipping energy during dip-moveout. To account for the efficacy of seismic anisotropy in imaging, an anisotropic wave equation must be engaged. 2015-09 Article PeerReviewed http://iopscience.iop.org/article/10.1088/1755-1315/30/1/012007/meta S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, . (2015) A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing. A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing . http://eprints.utp.edu.my/12258/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic QE Geology
spellingShingle QE Geology
S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, .
A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing
description The Earth's subsurface is an anisotropic medium where the velocity of seismic waves alters in different propagation angles. Omitting anisotropy in seismic imaging not only brings mis-positioning of migrated dipping events but also fails to retain dipping energy during dip-moveout. To account for the efficacy of seismic anisotropy in imaging, an anisotropic wave equation must be engaged.
format Article
author S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, .
author_facet S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, .
author_sort S.Y.M Alashloo, Deva Ghosh, YasirBashir, W. I. Wan Yusoff, .
title A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing
title_short A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing
title_full A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing
title_fullStr A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing
title_full_unstemmed A comparision on initial-value ray tracing and fast marching eikonal solver for VTI traveltime computing
title_sort comparision on initial-value ray tracing and fast marching eikonal solver for vti traveltime computing
publishDate 2015
url http://iopscience.iop.org/article/10.1088/1755-1315/30/1/012007/meta
http://eprints.utp.edu.my/12258/
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