A number of astrophysical scenarios possess and preserve an overall cylindrical symmetry when also undergoing a catastrophic and nonlinear evolution. Exploiting such a symmetry, these processes can be studied through numerical-relativity simulations at smaller computational costs and at considerably larger spatial resolutions. We present here a new flux-conservative formulation of the relativistic hydrodynamics equations in cylindrical coordinates. By rearranging those terms in the equations which are the sources of the largest numerical errors, the new formulation yields a global truncation error, which is one or more orders of magnitude smaller than those of alternative and commonly used formulations. We illustrate this through a series of numerical tests involving the evolution of oscillating spherical and rotating stars, as well as shock-tube tests

Kellerman, T., Baiotti, L., Giacomazzo, B., Rezzolla, L. (2008). An improved formulation of the relativistic hydrodynamics equations in 2D Cartesian coordinates. CLASSICAL AND QUANTUM GRAVITY, 25(22) [10.1088/0264-9381/25/22/225007].

An improved formulation of the relativistic hydrodynamics equations in 2D Cartesian coordinates

Giacomazzo, B;
2008

Abstract

A number of astrophysical scenarios possess and preserve an overall cylindrical symmetry when also undergoing a catastrophic and nonlinear evolution. Exploiting such a symmetry, these processes can be studied through numerical-relativity simulations at smaller computational costs and at considerably larger spatial resolutions. We present here a new flux-conservative formulation of the relativistic hydrodynamics equations in cylindrical coordinates. By rearranging those terms in the equations which are the sources of the largest numerical errors, the new formulation yields a global truncation error, which is one or more orders of magnitude smaller than those of alternative and commonly used formulations. We illustrate this through a series of numerical tests involving the evolution of oscillating spherical and rotating stars, as well as shock-tube tests
Articolo in rivista - Articolo scientifico
numerical relativity
English
2008
25
22
225007
open
Kellerman, T., Baiotti, L., Giacomazzo, B., Rezzolla, L. (2008). An improved formulation of the relativistic hydrodynamics equations in 2D Cartesian coordinates. CLASSICAL AND QUANTUM GRAVITY, 25(22) [10.1088/0264-9381/25/22/225007].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/242520
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