Robust Model Reduction by -norm Minimization and Approximation via Dictionaries: Application to Linear and Nonlinear Hyperbolic Problems
arXiv:1506.06178
Abstract
We propose a novel model reduction approach for the approximation of non linear hyperbolic equations in the scalar and the system cases. The approach relies on an offline computation of a dictionary of solutions together with an online -norm minimization of the residual. It is shown why this is a natural framework for hyperbolic problems and tested on nonlinear problems such as Burgers' equation and the one-dimensional Euler equations involving shocks and discontinuities. Efficient algorithms are presented for the computation of the -norm minimizer, both in the cases of linear and nonlinear residuals. Results indicate that the method has the potential of being accurate when involving only very few modes, generating physically acceptable, oscillation-free, solutions.
Cited by in corpus (5)
- Conservative model reduction for finite-volume models
- and -adaptive Interpolation by Transformed Snapshots for Parametric and Stochastic Hyperbolic PDEs
- Model reduction of a parametrized scalar hyperbolic conservation law using displacement interpolation
- Transformed Snapshot Interpolation with High Resolution Transforms
- Transport reversal for model reduction of hyperbolic partial differential equations