The Black Hole Accretion Code: adaptive mesh refinement and constrained transport
arXiv:1802.00860 · doi:10.1088/1742-6596/1031/1/012008
Abstract
With the forthcoming VLBI images of Sgr A* and M87, simulations of accretion flows onto black holes acquire a special importance to aid with the interpretation of the observations and to test the predictions of different accretion scenarios, including those coming from alternative theories of gravity. The Black Hole Accretion Code (BHAC) is a new multidimensional general-relativistic magnetohydrondynamics (GRMHD) module for the MPI-AMRVAC framework. It exploits its adaptive mesh refinement techniques (AMR) to solve the equations of ideal magnetohydrodynamics in arbitrary curved spacetimes with a significant speedup and saving in computational cost. In a previous work, this was shown using a Generalized Lagrange Multiplier (GLM) to enforce the solenoidal constraint of the magnetic field. While GLM is fully compatible with MPI-AMRVAC's AMR infrastructure, we found that simulations were sensible to the divergence control technique employed, resulting in an improved behavior for those using Constrained Transport (CT). However, cell-centered CT is incompatible with AMR, and several modifications were required to make AMR compatible with staggered CT. We present here preliminary results of these new additions, which achieved machine precision fulfillment of the solenoidal constraint and a significant speedup in a problem close to the intended scientific application.
10 pages, 5 figures, submitted to the Proceedings of the 12th International Conference on Numerical Modeling of Space Plasma Flows (ASTRONUM-2017)
References in corpus (7)
- ECHO: an Eulerian Conservative High Order scheme for general relativistic magnetohydrodynamics and magnetodynamics
- The Black Hole Accretion Code
- MPI-AMRVAC for Solar and Astrophysics
- THC: a new high-order finite-difference high-resolution shock-capturing code for special-relativistic hydrodynamics
- WhiskyMHD: a new numerical code for general relativistic magnetohydrodynamics
- A moving mesh unstaggered constrained transport scheme for magnetohydrodynamics
- Simulations of recoiling black holes: adaptive mesh refinement and radiative transfer
Cited by in corpus (9)
- First Sagittarius A* Event Horizon Telescope Results. V. Testing Astrophysical Models of the Galactic Center Black Hole
- Constrained transport and adaptive mesh refinement in the Black Hole Accretion Code
- General relativistic resistive magnetohydrodynamics with robust primitive variable recovery for accretion disk simulations
- A geometric multigrid library for quadtree/octree AMR grids coupled to MPI-AMRVAC
- The Variability of the Black-Hole Image in M87 at the Dynamical Time Scale
- Non-linear evolutions of magnetised thick discs around black holes: dependence on the initial data
- Bondi-Hoyle-Lyttleton accretion onto a rotating black hole with ultralight scalar hair
- Impacts of nonthermal emission on the images of a black hole shadow and extended jets in two-temperature GRMHD simulations
- Energy distribution and substructure formation in astrophysical MHD simulations