551.
Lahivaara, T., Dudley Ward, N. F., Huttunen, T., Rawlinson, Z., Kaipio, J. P., (2015), "Estimation of aquifer dimensions from passive seismic signals in the presence of material and source uncertainties ", Geophysical Journal International , 200 , 3 : pg: 1662--1675, (DOI: 10.1093/gji/ggu494 ). Cited by:
552.
Lähivaara, T., Ward, N. F. D., Huttunen, T., Koponen, J., Kaipio, J. P., (2014), "Estimation of aquifer dimensions from passive seismic signals with approximate wave propagation models ", Inverse Problems , 30 , 1 : pg: 015003, (DOI: 10.1088/0266-5611/30/1/015003 ). Cited by:
553.
Lott, M., Roux, P., Garambois, S., Guéguen, P., Colombi, A., (2019), "Evidence of metamaterial physics at the geophysics scale: the METAFORET experiment ", Geophysical Journal International , 220 , 2 : pg: 1330--1339, (DOI: 10.1093/gji/ggz528 ). Cited by:
554.
Luo, Y., Zhu, H., Nissen-Meyer, T., Morency, C., Tromp, J., (2009), "Seismic modeling and imaging based upon spectral-element and adjoint methods ", The Leading Edge , 28 , 5 : pg: 568--574, (DOI: 10.1190/1.3124932 ). Cited by:
555.
Mahvelati, S., Coe, J. T., Nyquist, J. E., (2021), "Characterizing the Effects of Survey Parameters on Experimental Love Wave Multichannel Analysis of Surface Wave (MASW) Data ", Pure and Applied Geophysics , : (DOI: 10.1007/s00024-021-02790-3 ). Cited by:
556.
Martire, L., Martin, R., Brissaud, Q., Garcia, R. F., (2021), "SPECFEM2D-DG, an open source software modeling mechanical waves in coupled solid-fluid systems: the Linearised navier-stokes approach ", Geophysical Journal International , : (DOI: 10.1093/gji/ggab308 ). Cited by:
557.
Morency, C., (2019), "Electromagnetic Wave Propagation based upon Spectral-Element Methodology in Dispersive and Attenuating Media ", Geophysical Journal International , 22 , 2 : pg: 951--966, (DOI: 10.1093/gji/ggz510 ). Cited by:
558.
Morency, C., Luo, Y., Tromp, J., (2009), "Finite-frequency kernels for wave propagation in porous media based upon adjoint methods ", Geophysical Journal International , 179 , 2 : pg: 1148--1168, (DOI: 10.1111/j.1365-246X.2009.04332.x ). Cited by:
559.
Morency, C., Tromp, J., (2008), "Spectral-element simulations of wave propagation in porous media ", Geophysical Journal International , 175 , 1 : pg: 301--345, (DOI: 10.1111/j.1365-246X.2008.03907.x ). Cited by:
560.
N.J. Mancinelli, K. M. Fischer, (2017), "The spatial sensitivity of Sp converted wavesScattered wave kernels and their applications to receiver-function migration and inversion ", Geophysical Journal International , 212 , 3 : pg: 1722--1735, (DOI: 10.1093/gji/ggx506 ). Cited by:
561.
Nguyen, L. T., Nestorovic, T., (2016), "Unscented hybrid simulated annealing for fast inversion of tunnel seismic waves ", Computer Methods in Applied Mechanics and Engineering , 301 : pg: 281--299, (DOI: 10.1016/j.cma.2015.12.004 ). Cited by:
562.
Örsvuran, R., Bozdag, E., Modrak, R., Lei, W., Ruan, Y., (2019), "Double-difference measurements in global full-waveform inversions ", Geophysical Journal International , 220 , 1 : pg: 661--680, (DOI: 10.1093/gji/ggz444 ). Cited by:
563.
Paap, B., Kraaijpoel, D., Wassing, B., Wees, J-D, (2019), "Simulation of induced seismic ground motions using coupled geomechanical and seismic wave propagation models ", Geophysical Journal International , 220 , 2 : pg: 1284--1299, (DOI: 10.1093/gji/ggz506 ). Cited by:
564.
Sieminski, A., Paulssen, H., Trampert, J., Tromp, J., (2008), "Finite-Frequency SKS Splitting: Measurement and Sensitivity Kernels ", Bulletin of the Seismological Society of America , 98 , 4 : pg: 1797--1810, (DOI: 10.1785/0120070297 ). Cited by:
565.
Tape, C., Liu, Q., Tromp, J., (2007), "Finite-frequency tomography using adjoint methods-Methodology and examples using membrane surface waves ", Geophysical Journal International , 168 , 3 : pg: 1105--1129, (DOI: 10.1111/j.1365-246X.2006.03191.x ). Cited by:
566.
Tong, P., Chen, C-W, Komatitsch, D., Basini, P., Liu, Q., (2014), "High-resolution seismic array imaging based on an SEM-FK hybrid method ", Geophysical Journal International , 197 , 1 : pg: 369--395, (DOI: 10.1093/gji/ggt508 ). Cited by:
567.
Traore, O. I., Favretto-Cristini, N., Cristini, P., Pantera, L., Viguier-Pla, S., (2018), "Impact of the Test Device on Acoustic Emission Signals From Nuclear Safety Experiments: Contribution of Wave Propagation Modeling to Signal Processing ", IEEE Transactions on Nuclear Science , 65 , 9 : pg: 2479--2489, (DOI: 10.1109/TNS.2018.2844291 ). Cited by:
568.
Tromp, J., Luo, Y., Hanasoge, S., Peter, D., (2010), "Noise cross-correlation sensitivity kernels: Noise cross-correlation sensitivity kernels ", Geophysical Journal International , 183 , 2 : pg: 791--819, (DOI: 10.1111/j.1365-246X.2010.04721.x ). Cited by:
569.
Tromp, J., Tape, C., Liu, Q., (2005), "Seismic tomography, adjoint methods, time reversal and banana-doughnut kernels: Seismic tomography, adjoint methods, time reversal and banana-doughnut kernels ", Geophysical Journal International , 160 , 1 : pg: 195--216, (DOI: 10.1111/j.1365-246X.2004.02453.x ). Cited by:
570.
Vai, R., Castillo-Covarrubias, J. M., Sánchez-Sesma, F. J., Komatitsch, D., Vilotte, J-P, (1999), "Elastic wave propagation in an irregularly layered medium ", Soil Dynamics and Earthquake Engineering , 18 , 1 : pg: 11--18, (DOI: 10.1016/S0267-7261(98)00027-X ). Cited by:
571.
Wijk, K., Komatitsch, D., Scales, J. A., Tromp, J., (2004), "Analysis of strong scattering at the micro-scale ", The Journal of the Acoustical Society of America , 115 , 3 : pg: 1006, (DOI: 10.1121/1.1647480 ). Cited by:
572.
Wang, X., Cai, M., (2017), "A Method to Estimate Shear Quality Factor of Hard Rocks ", Pure and Applied Geophysics , 174 , 7 : pg: 2689--2703, (DOI: 10.1007/s00024-017-1577-z ). Cited by:
573.
Wang, X., Cai, M., (2017), "Numerical modeling of seismic wave propagation and ground motion in underground mines ", Tunnelling and Underground Space Technology , 68 : pg: 211--230, (DOI: 10.1016/j.tust.2017.05.019 ). Cited by:
574.
Xie, Y., Rychert, C. A., Harmon, N., Liu, Q., Gajewski, D., (2021), "On-the-Fly Full Hessian Kernel Calculations Based upon Seismic-Wave Simulations ", Seismological Research Letters , : (DOI: 10.1785/0220200410 ). Cited by:
575.
Yuan, Y. O., Simons, F. J., (2014), "Multiscale adjoint waveform-difference tomography using wavelets ", Geophysics , 79 , 3 : pg: Wa79-Wa95, (DOI: 10.1190/geo2013-0383.1 ). Cited by:
576.
Zheng, L., Zhao, Q., Milkereit, B., Grasselli, G., Liu, Q., (2014), "Spectral-element simulations of elastic wave propagation in exploration and geotechnical applications ", Earthquake Science , 27 , 2 : pg: 179--187, (DOI: 10.1007/s11589-014-0069-9 ). Cited by:
577.
Zhu, H., Luo, Y., Nissen-Meyer, T., Morency, C., Tromp, J., (2009), "Elastic imaging and time-lapse migration based on adjoint methods ", Geophysics , 74 , 6 : pg: Wca167-Wca177, (DOI: 10.1190/1.3261747 ). Cited by:
578.
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:
579.
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:
580.
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:
581.
Komatitsch, D., Martin, R., (2012), "SEISMIC_CPML v1.1.4 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
582.
Komatitsch, D., Martin, R., (2011), "SEISMIC_CPML v1.1.3 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
583.
Komatitsch, D., Martin, R., (2010), "SEISMIC_CPML v1.1.2 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
584.
Komatitsch, D., Martin, R., (2009), "SEISMIC_CPML v1.0.2 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
585.
Komatitsch, D., Martin, R., (2009), "SEISMIC_CPML v1.1.0 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
586.
Komatitsch, D., Martin, R., (2009), "SEISMIC_CPML v1.1.1 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
587.
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:
588.
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:
589.
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:
590.
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:
591.
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:
592.
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:
593.
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:
594.
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:
595.
Komatitsch, D., Vilotte, J-P, (1998), "The spectral element method: An efficient tool to simulate the seismic response of 2D and 3D geological structures ", Bulletin of the Seismological Society of America , 88 , 2 : pg: 368--392, (DOI: 10.1785/BSSA0880020368 ). Cited by:
596.
Tromp, J., Komatitsch, D., (2013), "SPECFEM1D v1.0.4 [software] ", : . Cited by:
597.
Tromp, J., Komatitsch, D., (2011), "SPECFEM1D v1.0.1 [software] ", Computational Infrastructure for Geodynamics: . Cited by:
598.
Jiang, W., Xi, C., Wang, W., Ruan, Y., (2021), "Time Window Selection of Seismic Signals for Waveform Inversion Based on Deep Learning ", IEEE Transactions on Geoscience and Remote Sensing , : pg: 1--10, (DOI: 10.1109/TGRS.2021.3076531 ). Cited by:
599.
Kim, Y. H., Liu, Q., Tromp, J., (2011), "Adjoint centroid-moment tensor inversions: Adjoint centroid-moment tensor inversions ", Geophysical Journal International , 186 , 1 : pg: 264--278, (DOI: 10.1111/j.1365-246X.2011.05027.x ). Cited by:
600.
Lee, E-J, Chen, P., (2013), "Automating seismic waveform analysis for full 3-D waveform inversions ", Geophysical Journal International , 194 , 1 : pg: 572--589, (DOI: 10.1093/gji/ggt124 ). Cited by: