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    Fast sweeping algorithm for accurate solution of the TTI eikonal equation using factorization

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    geo2016-0712.1.pdf
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    Type
    Article
    Authors
    bin Waheed, Umair
    Alkhalifah, Tariq Ali cc
    KAUST Department
    Earth Science and Engineering Program
    Physical Science and Engineering (PSE) Division
    Seismic Wave Analysis Group
    Date
    2017-08-21
    Online Publication Date
    2017-08-21
    Print Publication Date
    2017-11
    Permanent link to this record
    http://hdl.handle.net/10754/625057
    
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    Abstract
    Traveltime computation is essential for many seismic data processing applications and velocity analysis tools. High-resolution seismic imaging requires eikonal solvers to account for anisotropy whenever it significantly affects the seismic wave kinematics. Moreover, computation of auxiliary quantities, such as amplitude and take-off angle, rely on highly accurate traveltime solutions. However, the finite-difference based eikonal solution for a point-source initial condition has an upwind source-singularity at the source position, since the wavefront curvature is large near the source point. Therefore, all finite-difference solvers, even the high-order ones, show inaccuracies since the errors due to source-singularity spread from the source point to the whole computational domain. We address the source-singularity problem for tilted transversely isotropic (TTI) eikonal solvers using factorization. We solve a sequence of factored tilted elliptically anisotropic (TEA) eikonal equations iteratively, each time by updating the right hand side function. At each iteration, we factor the unknown TEA traveltime into two factors. One of the factors is specified analytically, such that the other factor is smooth in the source neighborhood. Therefore, through the iterative procedure we obtain accurate solution to the TTI eikonal equation. Numerical tests show significant improvement in accuracy due to factorization. The idea can be easily extended to compute accurate traveltimes for models with lower anisotropic symmetries, such as orthorhombic, monoclinic or even triclinic media.
    Citation
    Bin Waheed U, Alkhalifah T (2017) Fast sweeping algorithm for accurate solution of the TTI eikonal equation using factorization. GEOPHYSICS: 1–43. Available: http://dx.doi.org/10.1190/geo2016-0712.1.
    Sponsors
    The numerical tests presented in this paper are reproducible and available under the open source software package Madagascar (Fomel et al., 2013). We are grateful to all developers and contributors of the package.
    Publisher
    Society of Exploration Geophysicists
    Journal
    GEOPHYSICS
    DOI
    10.1190/geo2016-0712.1
    Additional Links
    http://library.seg.org/doi/10.1190/geo2016-0712.1
    ae974a485f413a2113503eed53cd6c53
    10.1190/geo2016-0712.1
    Scopus Count
    Collections
    Articles; Physical Science and Engineering (PSE) Division; Earth Science and Engineering Program

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