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SEISMIC_CPML

By Dimitri Komatitsch1, Roland Martin1

1. CNRS, France

Citations Non-affiliated (17) | Affiliated (0)

Non-affiliated authors

  • Nagaso, Masaru, (2018), "Study of ultrasound wave propagation in a heterogeneous fluid medium for the monitoring of an operating sodium-based nuclear reactor", AMU-CNRS-ECM, Marseille, France: . Cited by:

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  • Xie, Z., Komatitsch, D., Martin, R., Matzen, R., (2014), "Improved forward wave propagation and adjoint-based sensitivity kernel calculations using a numerically stable finite-element PML", Geophysical Journal International, 198, 3: pg: 1714--1747, (DOI: 10.1093/gji/ggu219). Cited by:

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  • Goddeke, D., Komatitsch, D., Moller, M., Kindratenko, V. (2014), "Numerical Computations with GPUs", Finite and Spectral Element Methods on Unstructured Grids for Flow and Wave Propagation Problems, Springer International Publishing, Cham: pg: 183--206, 978-3-319-06548-9, (DOI: 10.1007/978-3-319-06548-9_9). Cited by:

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  • Monteiller, V., Chevrot, S., Komatitsch, D., Fuji, N., (2013), "A hybrid method to compute short-period synthetic seismograms of teleseismic body waves in a 3-D regional model", Geophysical Journal International, 192, 1: pg: 230--247, (DOI: 10.1093/gji/ggs006). Cited by:

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  • Komatitsch, D., Martin, R., (2012), "SEISMIC_CPML v1.1.4 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Komatitsch, D., Carcione, J. M., Cavallini, F., Favretto-Cristini, N., (2011), "Elastic surface waves in crystals -- Part 2: Cross-check of two full-wave numerical modeling methods", Ultrasonics, 51, 8: pg: 878--889, (DOI: 10.1016/j.ultras.2011.05.001). Cited by:

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  • Komatitsch, D., Martin, R., (2011), "SEISMIC_CPML v1.1.3 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Michéa, D., Komatitsch, D., (2010), "Accelerating a three-dimensional finite-difference wave propagation code using GPU graphics cards: Accelerating a wave propagation code using GPUs", Geophysical Journal International, 182, 1: pg: 389--402, (DOI: 10.1111/j.1365-246X.2010.04616.x). Cited by:

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  • Martin, R., Komatitsch, D., Gedney, S. D., Bruthiaux, E., (2010), "A High-Order Time and Space Formulation of the Unsplit Perfectly Matched Layer for the Seismic Wave Equation Using Auxiliary Differential Equations (ADE-PML)", CMES: Computer Modeling In Engineering & Sciences, 56, 1: pg: 17--42, (DOI: 10.3970/cmes.2010.056.017). Cited by:

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  • Hanasoge, S. M., Komatitsch, D., Gizon, L., (2010), "An absorbing boundary formulation for the stratified, linearized, ideal MHD equations based on an unsplit, convolutional perfectly matched layer", Astronomy & Astrophysics, 522: pg: A87, (DOI: 10.1051/0004-6361/201014345). Cited by:

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  • Komatitsch, D., Martin, R., (2010), "SEISMIC_CPML v1.1.2 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Martin, R., Komatitsch, D., (2009), "An unsplit convolutional perfectly matched layer technique improved at grazing incidence for the viscoelastic wave equation", Geophysical Journal International, 179, 1: pg: 333--344, (DOI: 10.1111/j.1365-246X.2009.04278.x). Cited by:

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  • Komatitsch, D., Martin, R., (2009), "SEISMIC_CPML v1.1.1 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Komatitsch, D., Martin, R., (2009), "SEISMIC_CPML v1.1.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Komatitsch, D., Martin, R., (2009), "SEISMIC_CPML v1.0.2 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Martin, R., Komatitsch, D., Ezziani, A., (2008), "An unsplit convolutional perfectly matched layer improved at grazing incidence for seismic wave propagation in poroelastic media", Geophysics, 73, 4: pg: T51-T61, (DOI: 10.1190/1.2939484). Cited by:

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  • Komatitsch, D., Martin, R., (2007), "An unsplit convolutional perfectly matched layer improved at grazing incidence for the seismic wave equation", Geophysics, 72, 5: pg: Sm155-Sm167, (DOI: 10.1190/1.2757586). Cited by:

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