Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation

Modification of the hyperbolic travel time equation into non-hyperbolic travel time equation is important to increase the reduction residual moveout for long offset data. Some researchers have modified hyperbolic travel time equation into a non-hyperbolic travel time equation to obtain a more accura...

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Main Authors: Pratiwi Indah Nur, Rosid Mohammad Syamsu, Purba Humbang
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/51/e3sconf_icenis2019_15005.pdf
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spelling doaj-fc4eaf6fc15b483288bd286a257b2c352021-04-02T11:35:07ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011251500510.1051/e3sconf/201912515005e3sconf_icenis2019_15005Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé ApproximationPratiwi Indah Nur0Rosid Mohammad Syamsu1Purba Humbang2Departement of Physics, Faculty of Mathematics and Natural Science, University of IndonesiaDepartement of Physics, Faculty of Mathematics and Natural Science, University of IndonesiaPPPTMBG LEMIGASModification of the hyperbolic travel time equation into non-hyperbolic travel time equation is important to increase the reduction residual moveout for long offset data. Some researchers have modified hyperbolic travel time equation into a non-hyperbolic travel time equation to obtain a more accurate value NMO velocity and parameter an-ellipticity or etha on the large offset to depth ratio (ODR) so that the residual moveout value is smaller mainly in large offset to depth ratio. The aims of research is to increase the reduction value of error residue at long offset data using Padé approximation then compare with several approximations. The method used in this study is to conduct forward modeling of the subsurface coating structure. The results of the three-dimensional analysis show that the Padé approximation has the best accuracy compared to the other travel time equations for ODR value up to 4 with an-ellipticity parameter is varying from 0 to 0.5. Testing of synthetic data for single layer on vertical transverse isotropy (VTI) medium obtained the maximum residual error value produced by the Padé approximation is 0.25% in ODR=4. Therefore, Padé approximation is better than other methods for reducing residual moveout.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/51/e3sconf_icenis2019_15005.pdfresidual moveoutlong offsetpadé approximationanisotop medium
collection DOAJ
language English
format Article
sources DOAJ
author Pratiwi Indah Nur
Rosid Mohammad Syamsu
Purba Humbang
spellingShingle Pratiwi Indah Nur
Rosid Mohammad Syamsu
Purba Humbang
Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation
E3S Web of Conferences
residual moveout
long offset
padé approximation
anisotop medium
author_facet Pratiwi Indah Nur
Rosid Mohammad Syamsu
Purba Humbang
author_sort Pratiwi Indah Nur
title Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation
title_short Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation
title_full Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation
title_fullStr Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation
title_full_unstemmed Reducing Residual Moveout for Long Offset Data in VTI Media Using Padé Approximation
title_sort reducing residual moveout for long offset data in vti media using padé approximation
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Modification of the hyperbolic travel time equation into non-hyperbolic travel time equation is important to increase the reduction residual moveout for long offset data. Some researchers have modified hyperbolic travel time equation into a non-hyperbolic travel time equation to obtain a more accurate value NMO velocity and parameter an-ellipticity or etha on the large offset to depth ratio (ODR) so that the residual moveout value is smaller mainly in large offset to depth ratio. The aims of research is to increase the reduction value of error residue at long offset data using Padé approximation then compare with several approximations. The method used in this study is to conduct forward modeling of the subsurface coating structure. The results of the three-dimensional analysis show that the Padé approximation has the best accuracy compared to the other travel time equations for ODR value up to 4 with an-ellipticity parameter is varying from 0 to 0.5. Testing of synthetic data for single layer on vertical transverse isotropy (VTI) medium obtained the maximum residual error value produced by the Padé approximation is 0.25% in ODR=4. Therefore, Padé approximation is better than other methods for reducing residual moveout.
topic residual moveout
long offset
padé approximation
anisotop medium
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/51/e3sconf_icenis2019_15005.pdf
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AT rosidmohammadsyamsu reducingresidualmoveoutforlongoffsetdatainvtimediausingpadeapproximation
AT purbahumbang reducingresidualmoveoutforlongoffsetdatainvtimediausingpadeapproximation
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