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An Improved Exact Riemann Solver for Multidimensional Relativistic Flows

Rezzolla, LINFN, Physics Department, University of Trieste, Via Valerio 2, 34127 Trieste, ItalyZanotti, OSISSA, International School for Advanced Studies, Trieste, Via Beirut 2–4, 34014 Trieste, ItalyPons, J APhysics Department, University of Rome 'La Sapienza', Piazzale Aldo Moro 2, I-00185 Rome, Italy
2002en
ABI

Abstract

We extend our approach for the exact solution of the Riemann problem in relativistic hydrodynamics to the case in which the fluid velocity has components tangential to the initial discontinuity. As in one-dimensional flows, we here show that the wave-pattern produced in a multidimensional relativistic Riemann problem can be predicted entirely by examining the initial conditions. Our method is logically very simple and allows for a numerical implementation of an exact Riemann solver which is both straightforward and computationally efficient. The simplicity of the approach is also important for revealing special relativistic effects responsible for a smooth transition from one wave-pattern to another when the tangential velocities in the initial states are suitably varied. While the content of this paper is focussed on a flat spacetime, the local Lorentz invariance allows its use also in fully general relativistic calculations.

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