Multiscale Methods in Science And Engineering
by Engquist, Bjorn; Lotstedt, Per; Runborg, OlofRent Textbook
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Summary
Table of Contents
| Multiscale discontinuous Galerkin methods for elliptic problems with multiple scales | p. 1 |
| Discrete network approximation for highly-packed composites with irregular geometry in three dimensions | p. 21 |
| Adaptive Monte Carlo algorithms for stopped diffusion | p. 59 |
| The heterogeneous multi-scale method for homogenization problems | p. 89 |
| A coarsening multigrid method for flow in heterogeneous porous media | p. 111 |
| On the modeling of small geometric features in computational electromagnetics | p. 133 |
| Coupling PDEs and SDEs : the illustrative example of the multiscale simulation of viscoelastic flows | p. 149 |
| Adaptive submodeling for linear elasticity problems with multiscale geometric features | p. 169 |
| Adaptive variational multiscale methods based on a posteriori error estimation : duality techniques for elliptic problems | p. 181 |
| Multipole solution of electromagnetic scattering problems with many, parameter dependent incident waves | p. 195 |
| Introduction to normal multiresolution approximation | p. 205 |
| Combining the gap-tooth scheme with projective integration : patch dynamics | p. 225 |
| Multiple time scale numerical methods for the inverted pendulum problem | p. 241 |
| Multiscale homogenization of the Navier-Stokes equation | p. 263 |
| Numerical simulations of the dynamics of fiber suspensions | p. 275 |
| Table of Contents provided by Blackwell. All Rights Reserved. |
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