We present a description of the adaptive mesh refinement (AMR) implementation of the PLUTO code for solving the equations of classical and special relativistic magnetohydrodynamics (MHD and RMHD). The current release exploits, in addition to the static grid version of the code, the dis-tributed infrastructure of the CHOMBO library for multidimensional parallel computations over block-structured, adaptively refined grids. We employ a conservative finite-volume approach where primary flow quantities are discretized at the cell-center in a dimensionally unsplit fashion using the Corner Transport Upwind (CTU) method. Time stepping relies on a characteristic tracing step where piecewise parabolic method (PPM), weighted essentially non-oscillator...
ARMS is a robust code for solving the single-fluid, fully compressible equations of magnetohydrodyna...
A new code and methodology are introduced for solving the fully general relativistic magnetohydrodyn...
We present the implementation of a three-dimensional, second order accurate Godunov-type algorithm f...
We present a description of the adaptive mesh refinement (AMR) implementation of the PLUTO code for ...
Abstract—A 3-D parallel adaptive mesh refinement (AMR) scheme is described for solving the partial-d...
Relativistic hydro and magnetohydrodynamics provide continuum fluid descriptions for gas and plasma ...
International audienceAims. In this paper, we present a new method to perform numerical simulations ...
A description is given of the algorithms implemented in the AstroBEAR adaptive mesh-refinement code ...
We present the implementation of a three-dimensional, second-order accurate Godunov-type algorithm f...
International audienceA description is given of the algorithms implemented in the AstroBEAR adaptive...
We present an adaptive parallel solver for the numerical simulation of ideal magnetohydrodynamics in...
Aims. In this paper, we present a new method to perform numerical simulations of astrophysical MHD ...
Implementation details and test cases of a newly developed hydrodynamic code, AMRA, are presented. T...
We have developed a modern code to solve the magneto-hydrodynamic (MHD) or hydrodynamic (HD) equatio...
We present the PLUTO code for the solution of high-Mach number flows in 1, 2 and 3 spatial dimension...
ARMS is a robust code for solving the single-fluid, fully compressible equations of magnetohydrodyna...
A new code and methodology are introduced for solving the fully general relativistic magnetohydrodyn...
We present the implementation of a three-dimensional, second order accurate Godunov-type algorithm f...
We present a description of the adaptive mesh refinement (AMR) implementation of the PLUTO code for ...
Abstract—A 3-D parallel adaptive mesh refinement (AMR) scheme is described for solving the partial-d...
Relativistic hydro and magnetohydrodynamics provide continuum fluid descriptions for gas and plasma ...
International audienceAims. In this paper, we present a new method to perform numerical simulations ...
A description is given of the algorithms implemented in the AstroBEAR adaptive mesh-refinement code ...
We present the implementation of a three-dimensional, second-order accurate Godunov-type algorithm f...
International audienceA description is given of the algorithms implemented in the AstroBEAR adaptive...
We present an adaptive parallel solver for the numerical simulation of ideal magnetohydrodynamics in...
Aims. In this paper, we present a new method to perform numerical simulations of astrophysical MHD ...
Implementation details and test cases of a newly developed hydrodynamic code, AMRA, are presented. T...
We have developed a modern code to solve the magneto-hydrodynamic (MHD) or hydrodynamic (HD) equatio...
We present the PLUTO code for the solution of high-Mach number flows in 1, 2 and 3 spatial dimension...
ARMS is a robust code for solving the single-fluid, fully compressible equations of magnetohydrodyna...
A new code and methodology are introduced for solving the fully general relativistic magnetohydrodyn...
We present the implementation of a three-dimensional, second order accurate Godunov-type algorithm f...