Propagation and Dispersion Characteristics of Scholte Wave in VTI Media with the Presence of Irregular Seabed

Xiaobo Liu , Yun Wang , Jianlei Zhang , Haifeng Chen , Hua Zhang

Journal of Earth Science ›› 2024, Vol. 35 ›› Issue (2) : 722 -725.

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Journal of Earth Science ›› 2024, Vol. 35 ›› Issue (2) : 722 -725. DOI: 10.1007/s12583-024-1965-0
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Propagation and Dispersion Characteristics of Scholte Wave in VTI Media with the Presence of Irregular Seabed

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Xiaobo Liu, Yun Wang, Jianlei Zhang, Haifeng Chen, Hua Zhang. Propagation and Dispersion Characteristics of Scholte Wave in VTI Media with the Presence of Irregular Seabed. Journal of Earth Science, 2024, 35(2): 722-725 DOI:10.1007/s12583-024-1965-0

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References

[1]

Appelö D, Petersson N A. A Stable Finite Difference Method for the Elastic Wave Equation on Complex Geometries with Free Surfaces. Communications in Computational Physics, 2009, 5: 84-107.

[2]

Bohlen T, Kugler S, Klein G, . 1.5D Inversion of Lateral Variation of Scholte-Wave Dispersion. Geophysics, 2004, 69(2): 330-344.

[3]

Buchen P W, Ben-Hador R. Free-Mode Surface-Wave Computations. Geophysical Journal International, 1996, 124(3): 869-887.

[4]

Carcione J M, Helle H B. The Physics and Simulation of Wave Propagation at the Ocean Bottom. Geophysics, 2004, 69(3): 825-839.

[5]

Choi Y, Min D J, Shin C. Two-Dimensional Waveform Inversion of Multi-Component Data in Acoustic-Elastic Coupled Media. Geophysical Prospecting, 2008, 56(6): 863-881.

[6]

Hvid S L. Three Dimensional Algebraic Grid Generation, 1994, Copenhagen: Technical University of Denmark

[7]

Huang P D, Lu J, Wang Y. Second-Order Approximate Reflection Coefficients of Vertical Transversely Isotropic Thin Beds. Acta Geophysica, 2022, 70(3): 1155-1169.

[8]

Komatitsch D, Barnes C, Tromp J. Wave Propagation near a Fluid-Solid Interface: A Spectral-Element Approach. Geophysics, 2000, 65(2): 623-631.

[9]

Klein G, Bohlen T, Theilen F, . Acquisition and Inversion of Dispersive Seismic Waves in Shallow Marine Environments. Marine Geophysical Researches, 2005, 26(2): 287-315.

[10]

Kugler S, Bohlen T, Bussat S, . Variability of Scholte-Wave Dispersion in Shallow-Water Marine Sediments. Journal of Environmental and Engineering Geophysics, 2005, 10(2): 203-218.

[11]

Lan H, Zhang Z. Three-Dimensional Wave-Field Simulation in Heterogeneous Transversely Isotropic Medium with Irregular Free Surface. Bulletin of the Seismological Society of America, 2011, 101(3): 1354-1370.

[12]

Li Q Y, Wu G C, Wu J L, . Finite Difference Seismic Forward Modeling Method for Fluid-Solid Coupled Media with Irregular Seabed Interface. Journal of Geophysics and Engineering, 2019, 16(1): 198-214.

[13]

Liu X B. Modeling Seismic Waves in Ocean with the Presence of Irregular Seabed and Rough Sea Surface. Journal of Geophysics and Engineering, 2023, 20(1): 49-66.

[14]

Lu J, Ma Z J, Xiong S, . Imaging of 3-D Three-Component Vertical Seismic Profile Data Based on Horizontally Layered Azimuthally Anisotropic Media. IEEE Transactions on Geoscience and Remote Sensing, 2023, 61 3317140

[15]

McMechan G A, Yedlin M J. Analysis of Dispersive Waves by Wave Field Transformation. Geophysics, 1981, 46(6): 869-874.

[16]

Nilsson S, Petersson N A, Sjögreen B, . Stable Difference Approximations for the Elastic Wave Equation in Second Order Formulation. SIAM Journal on Numerical Analysis, 2007, 45(5): 1902-1936.

[17]

Qu Y M, Sun J Z, Li Z C, . Forward Modeling of Ocean-Bottom Cable Data and Wave-Mode Separation in Fluid-Solid Elastic Media with Irregular Seabed. Applied Geophysics, 2018, 15(3): 432-447.

[18]

Randall C. Numerical Simulation of Acoustic Propagation at a Fluid-Solid Interface. The Journal of the Acoustical Society of America, 1983, 74(S1): S87-S88.

[19]

Rao Y, Wang Y H. Seismic Waveform Simulation for Models with Fluctuating Interfaces. Scientific Reports, 2018, 8 1 3098

[20]

Sofronov I, Zaitsev N, Dovgilovich L. Multi-Block Finite-Difference Method for 3D Elastodynamic Simulations in Anisotropic Subhorizontally Layered Media. Geophysical Prospecting, 2015, 63(5): 1142-1160.

[21]

Sun Y C, Zhang W, Xu J K, . Numerical Simulation of 2-D Seismic Wave Propagation in the Presence of a Topographic Fluid-Solid Interface at the Sea Bottom by the Curvilinear Grid Finite-Difference Method. Geophysical Journal International, 2017, 210(3): 1721-1738.

[22]

Thompson J F, Warsi Z U A, Mastin C W. Numerical Grid Generation Foundations and Applications, 1985, New York: North Hollad Publishing Company

[23]

van Vossen R, Robertsson J O A, Chapman C H. Finite-Difference Modeling of Wave Propagation in a Fluid-Solid Configuration. Geophysics, 2002, 67(2): 618-624.

[24]

Wang Y, Zhou H, Yuan S Y, . A Fourth Order Accuracy Summation-by-Parts Finite Difference Scheme for Acoustic Reverse Time Migration in Boundary-Conforming Grids. Journal of Applied Geophysics, 2017, 136: 498-512.

[25]

Wu H, Shao G Z, Li Q C. Study of Scholte Wave Dispersion Curves and Modal Energy Distribution Using a Wavefield Numerical Simulation Method. Exploration Geophysics, 2018, 49(3): 372-385.

[26]

Yilmaz O. Seismic Data Processing, Investigations in Geophysics, 1987, Houston: Society of Exploration Geophysicists

[27]

Zhang J F. Wave Propagation across Fluid-Solid Interfaces: A Grid Method Approach. Geophysical Journal International, 2004, 159(1): 240-252.

[28]

Zhang Z, Lu J, Zhang X Y, . Approximation of P-, S1-, and S2-Wave Reflection Coefficients for Orthorhombic Media. Geophysics, 2022, 87(4): C63-C76.

[29]

Zhang, H. M., Lu, J., Wang, Y., et al., 2023. PP- and PS-Wave Migration of OBN Seismic Data from Rugged Seabeds. Acta Geophysica, online first. https://doi.org/10.1007/s11600-023-01203-4

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