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  Oral Programme - SM5 Computational wave propagation

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Convener: Stupazzini, M.
Co-Convener: Festa, G.
Co-Sponsorship: Marie Curie Research and Training Network SPICE

Tuesday, 4 April 2006

Lecture Room: Lecture Room 20 (N)

Chairperson: FESTA. M.

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8:30 - 8:45
EGU06-A-01058;  SM5-1TU1O-001
Käser, M.; Dumbser, M.
A p-adaptive ADER-DG scheme for seismic waves in highly complex 3-D models

8:45 - 9:00
EGU06-A-02093;  SM5-1TU1O-002
Sieminski, A.; Liu, Q.; Trampert, J.; Tromp, J.
3D anisotropy sensitivity kernels using adjoint methods

9:00 - 9:15
EGU06-A-03869;  SM5-1TU1O-003
Bozdag, E.; Trampert, J.
Crustal corrections predicted by ray theory and finite frequency theory compared to measured time shifts from SEM seismograms using Crust2.0

9:15 - 9:30
EGU06-A-06197;  SM5-1TU1O-004
Kristek, J.; Moczo, P.; Galis, M.
A numerical comparison of the 1D FD schemes based on application of the conventional, staggered-grid and optimally accurate operators to the heterogeneous formulation of the equation of motion

9:30 - 9:45
EGU06-A-07332;  SM5-1TU1O-005
Seriani, G.; Oliveira, S.
Dispersion analysis of the Chebyshev spectral element method for the wave equation in the discrete spatial frequency domain

9:45 - 10:00
EGU06-A-09871;  SM5-1TU1O-006
Stupazzini, M.; Zambelli, C.; Scandella, L.; Festa, G.
The spectral element method as an effective tool for solving dynamic soil-structure interaction problems


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