A high-order/low-order (HOLO) algorithm for preserving conservation in time-dependent low-rank transport calculations
Abstract
Dynamical low-rank (DLR) approximation methods have previously been developed for time-dependent radiation transport problems. One crucial drawback of DLR is that it does not conserve important quantities of the calculation, which limits the applicability of the method. Here we address this conservation issue by solving a low-order equation with closure terms computed via a high-order solution calculated with DLR. We observe that the high-order solution well approximates the closure term, and the low-order solution can be used to correct the conservation bias in the DLR evolution. We also apply the linear discontinuous Galerkin method for the spatial discretization. We then demonstrate with the numerical results that this so-called high-order/low-order (HOLO) algorithm is conservative without sacrificing computational efficiency and accuracy.
- Publication:
-
Journal of Computational Physics
- Pub Date:
- December 2021
- DOI:
- 10.1016/j.jcp.2021.110672
- arXiv:
- arXiv:2011.06072
- Bibcode:
- 2021JCoPh.44710672P
- Keywords:
-
- Dynamical low-rank approximation;
- Radiation transport;
- Discontinuous Galerkin;
- Spherical harmonics;
- Physics - Computational Physics
- E-Print:
- doi:10.1016/j.jcp.2021.110672