Amanote Research
Register
Sign In
Hybrid Modeling of Elastic P-Sv Wave Motion: A Combined Finite-Element and Staggered-Grid Finite-Difference Approach
Bulletin of the Seismological Society of America
- United States
doi 10.1785/012003087
Full Text
Open PDF
Abstract
Available in
full text
Categories
Petrology
Geochemistry
Geophysics
Date
August 1, 2004
Authors
S. Ma
Publisher
Seismological Society of America (SSA)
Related search
A Hybrid Finite Element/Finite Difference Time Domain Electromagnetic Approach to the Analysis of High‐frequency FET Devices
International Journal of Numerical Modelling: Electronic Networks, Devices and Fields
Electronic Engineering
Simulation
Computer Science Applications
Electrical
Modeling
P- And S-Wavefield Simulations Using Both the First- And Second-Order Separated Wave Equations Through a High-Order Staggered Grid Finite-Difference Method
Earthquake Science
Geotechnical Engineering
Geophysics
Engineering Geology
Geology
A Hybrid Finite-Difference/Lowrank Solution to Anisotropy Acoustic Wave Equations
Geophysics
Petrology
Energy
Geochemistry
Geophysics
Finite Element Methods for a Bi-Wave Equation Modeling D-Wave Superconductors
Journal of Computational Mathematics
Computational Mathematics
Finite Element and Finite Difference Programs for Computing the Linear Electric and Elastic Properties of Detail Images of Random Materials
Electret Microphone Modeling and Optimization by Combined Finite Element Analysis and Lumped-Element Techniques
Journal of the Acoustical Society of America
Acoustics
Ultrasonics
Arts
Humanities
Fast and Adaptive Finite Element Approach for Modeling Brain Shift
Computer Aided Surgery
Finite Element Approximations of Nonlinear Elastic Waves
Mathematics of Computation
Computational Mathematics
Applied Mathematics
Number Theory
Algebra
Elastic Finite‐difference Method for Irregular Grids
Geophysics
Petrology
Energy
Geochemistry
Geophysics