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An efficient ADER-DG local time stepping scheme for 3D HPC simulation of seismic waves in poroelastic media
Názov An efficient ADER-DG local time stepping scheme for 3D HPC simulation of seismic waves in poroelastic media Autor Wolf Sebastian Spoluautori Gális Martin 1979 SAVUVOZ - Ústav vied o Zemi SAV SCOPUS RID ORCID Uphoff Carsten Gabriel Alice-Agnes Moczo Peter 1956 SAVUVOZ - Ústav vied o Zemi SAV SCOPUS RID RID ORCID Gregor Dávid Bader Michael Zdroj.dok. Journal of Computational Physics. Vol. 455 (2022), art. no. 110886 Jazyk dok. eng - angličtina Krajina US - Spojené štáty Druh dok. rozpis článkov z periodík (rbx) Ohlasy YANG, H.D. - FU, L.Y. - FU, B.Y. - DU, Q.Z. Poro-acoustoelasticity finite-difference simulation of elastic wave propagation in prestressed porous media. In GEOPHYSICS. ISSN 0016-8033, JUL-AUG 2022, vol. 87, no. 4, p. T329-T345. Dostupné na: https://doi.org/10.1190/GEO2021-0077.1. ZHANG, H. - SUN, Y.C. - REN, H.X. - ZHANG, W. - HUANG, Q.H. - CHEN, X.F. Discontinuous curvilinear collocated grid combined with nonuniform time step Runge-Kutta scheme for poroelastic finite-difference modeling. In GEOPHYSICS. ISSN 0016-8033, JAN-FEB 2023, vol. 88, no. 1, p. T1-T12. Dostupné na: https://doi.org/10.1190/GEO2022-0180.1. XU, J.Q. - HU, H.S. - HAN, B. 3-D Simulation of Wave Propagation in the Fractured Porous Media for Subsurface Sensing: A Rotated Staggered Finite-Difference Algorithm Based on Equivalent Medium Theory. In IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING. ISSN 0196-2892, 2023, vol. 61. Dostupné na: https://doi.org/10.1109/TGRS.2023.3326615. POPOV, I. S. Space–time adaptive ADER-DG finite element method with LST-DG predictor and a posteriori sub-cell ADER-WENO finite-volume limiting for multidimensional detonation waves simulation. In Computers and Fluids, 2024-11-15, 284, pp. ISSN 00457930. Dostupné na: https://doi.org/10.1016/j.compfluid.2024.106425. WANG, Dongdong - GAO, Yongxin - ZHOU, Guanqun - JIANG, Yaochang. Modelling of 2-D seismic wave propagation in heterogeneous porous media: A frequency-domain finite-element method formulated by variational principles. In Geophysical Journal International, 2024-12-01, 239, 3, pp. 1729-1756. ISSN 0956540X. Dostupné na: https://doi.org/10.1093/gji/ggae331. Kategória ADCA - Vedecké práce v zahraničných karentovaných časopisoch impaktovaných Kategória (od 2022) V3 - Vedecký výstup publikačnej činnosti z časopisu Typ výstupu článok Rok vykazovania 2021 Registrované v WOS Registrované v SCOPUS Registrované v CCC DOI 10.1016/j.jcp.2021.110886 článok
rok CC IF IF Q (best) JCR Av Jour IF Perc SJR SJR Q (best) CiteScore A rok vydania rok metriky IF IF Q (best) SJR SJR Q (best) 2022 2021 4.645 Q1 2.069 Q1
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