About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems

In this paper we present Rayleigh formulas obtained from Kirchhoff integral formulas, which can later be used to obtain migration images. The relevance of the studies conducted in the work is due to the widespread use of migration in the interests of seismic oil and gas seismic exploration. A specia...

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Main Authors: Alena Vladimirovna Favorskaya, Vasily Ivanovich Golubev
Format: Article
Language:Russian
Published: Institute of Computer Science 2017-10-01
Series:Компьютерные исследования и моделирование
Subjects:
Online Access:http://crm.ics.org.ru/uploads/crmissues/crm_2017_5/2017_05_09_06.pdf
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spelling doaj-d9ce622bbd11495fb89e544128792a042020-11-25T01:39:02ZrusInstitute of Computer ScienceКомпьютерные исследования и моделирование2076-76332077-68532017-10-019576177110.20537/2076-7633-2017-9-5-761-7712621About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problemsAlena Vladimirovna FavorskayaVasily Ivanovich GolubevIn this paper we present Rayleigh formulas obtained from Kirchhoff integral formulas, which can later be used to obtain migration images. The relevance of the studies conducted in the work is due to the widespread use of migration in the interests of seismic oil and gas seismic exploration. A special feature of the work is the use of an elastic approximation to describe the dynamic behaviour of a geological environment, in contrast to the widespread acoustic approximation. The proposed approach will significantly improve the quality of seismic exploration in complex cases, such as permafrost and shelf zones of the southern and northern seas. The complexity of applying a system of equations describing the state of a linear-elastic medium to obtain Rayleigh formulas and algorithms based on them is a significant increase in the number of computations, the mathematical and analytical complexity of the resulting algorithms in comparison with the case of an acoustic medium. Therefore in industrial seismic surveys migration algorithms for the case of elastic waves are not currently used, which creates certain difficulties, since the acoustic approximation describes only longitudinal seismic waves in geological environments. This article presents the final analytical expressions that can be used to develop software systems using the description of elastic seismic waves: longitudinal and transverse, thereby covering the entire range of seismic waves: longitudinal reflected PP-waves, longitudinal reflected SP-waves, transverse reflected PS-waves and transverse reflected SS-waves. Also, the results of comparison of numerical solutions obtained on the basis of Rayleigh formulas with numerical solutions obtained by the grid-characteristic method are presented. The value of this comparison is due to the fact that the method based on Rayleigh integrals is based on analytical expressions, while the grid-characteristic method is a method of numerical integration of solutions based on a calculated grid. In the comparison, different types of sources were considered: a point source model widely used in marine and terrestrial seismic surveying and a flat wave model, which is also sometimes used in field studies.http://crm.ics.org.ru/uploads/crmissues/crm_2017_5/2017_05_09_06.pdfseismic survey processhydrocarbonsKirchhoff formulaacoustic waveselastic wavesnumerical simulation
collection DOAJ
language Russian
format Article
sources DOAJ
author Alena Vladimirovna Favorskaya
Vasily Ivanovich Golubev
spellingShingle Alena Vladimirovna Favorskaya
Vasily Ivanovich Golubev
About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems
Компьютерные исследования и моделирование
seismic survey process
hydrocarbons
Kirchhoff formula
acoustic waves
elastic waves
numerical simulation
author_facet Alena Vladimirovna Favorskaya
Vasily Ivanovich Golubev
author_sort Alena Vladimirovna Favorskaya
title About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems
title_short About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems
title_full About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems
title_fullStr About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems
title_full_unstemmed About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems
title_sort about applying rayleigh formula based on the kirchhoff integral equations for the seismic exploration problems
publisher Institute of Computer Science
series Компьютерные исследования и моделирование
issn 2076-7633
2077-6853
publishDate 2017-10-01
description In this paper we present Rayleigh formulas obtained from Kirchhoff integral formulas, which can later be used to obtain migration images. The relevance of the studies conducted in the work is due to the widespread use of migration in the interests of seismic oil and gas seismic exploration. A special feature of the work is the use of an elastic approximation to describe the dynamic behaviour of a geological environment, in contrast to the widespread acoustic approximation. The proposed approach will significantly improve the quality of seismic exploration in complex cases, such as permafrost and shelf zones of the southern and northern seas. The complexity of applying a system of equations describing the state of a linear-elastic medium to obtain Rayleigh formulas and algorithms based on them is a significant increase in the number of computations, the mathematical and analytical complexity of the resulting algorithms in comparison with the case of an acoustic medium. Therefore in industrial seismic surveys migration algorithms for the case of elastic waves are not currently used, which creates certain difficulties, since the acoustic approximation describes only longitudinal seismic waves in geological environments. This article presents the final analytical expressions that can be used to develop software systems using the description of elastic seismic waves: longitudinal and transverse, thereby covering the entire range of seismic waves: longitudinal reflected PP-waves, longitudinal reflected SP-waves, transverse reflected PS-waves and transverse reflected SS-waves. Also, the results of comparison of numerical solutions obtained on the basis of Rayleigh formulas with numerical solutions obtained by the grid-characteristic method are presented. The value of this comparison is due to the fact that the method based on Rayleigh integrals is based on analytical expressions, while the grid-characteristic method is a method of numerical integration of solutions based on a calculated grid. In the comparison, different types of sources were considered: a point source model widely used in marine and terrestrial seismic surveying and a flat wave model, which is also sometimes used in field studies.
topic seismic survey process
hydrocarbons
Kirchhoff formula
acoustic waves
elastic waves
numerical simulation
url http://crm.ics.org.ru/uploads/crmissues/crm_2017_5/2017_05_09_06.pdf
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AT vasilyivanovichgolubev aboutapplyingrayleighformulabasedonthekirchhoffintegralequationsfortheseismicexplorationproblems
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