This paper describes a multidimensional hydrodynamic code which can be used for studies of relativistic astrophysical flows. The code solves the special relativistic hydrodynamic equations as a hyperbolic system of conservation laws based on the total variation diminishing (TVD) scheme. It uses a new set of conserved quantities and employs an analytic formula for transformation from the conserved quantities in the reference frame to the physical quantities in the local rest frame. Several standard tests, including relativistic shock tubes, a relativistic wall shock, and a relativistic blast wave, are presented to demonstrate that the code captures discontinuities correctly and sharply in ultrarelativistic regimes. The robustness and flexibi...
In an attempt to investigate the structures of ultra-relativistic jets injected into the intracluste...
We have developed a new computer code, RAM, to solve the conservative equations of special relativis...
A new code to simulate special relativistic hydrodynamic flows on supercomputer architectures with d...
This review is concerned with a discussion of numerical methods for the solution of the equations of...
This dissertation describes a multidimensional relativistic hydrodynamic code which solves the speci...
We construct a new Godunov type relativistic hydrodynamics code in Milne coordinates, using a Rieman...
Relativistic hydrodynamics is a very successful theoretical framework to describe the dynamics of ma...
We assess the suitability of a recent high-resolution central scheme developed by [CITE] for the sol...
Abstract. We review the evolution of the numerical techniques applied in relativistic hydrodynamics ...
In this paper, the general procedure to solve the General Relativistic Hydrodynamical(GRH) equations...
In this paper we present a full general relativistic one-dimensional hydro-code which incorporates a...
Multidimensional shock-capturing numerical schemes for special relativistic hydrodynamics (RHD) are ...
summary:We calculate self-consistent time-dependent models of astrophysical processes. We have devel...
We derive and analyze a simplified formulation of the numerical viscosity terms appearing in the exp...
WOS: 000242276600025In this paper, we have solved I-D special relativistic hydrodynamical equations ...
In an attempt to investigate the structures of ultra-relativistic jets injected into the intracluste...
We have developed a new computer code, RAM, to solve the conservative equations of special relativis...
A new code to simulate special relativistic hydrodynamic flows on supercomputer architectures with d...
This review is concerned with a discussion of numerical methods for the solution of the equations of...
This dissertation describes a multidimensional relativistic hydrodynamic code which solves the speci...
We construct a new Godunov type relativistic hydrodynamics code in Milne coordinates, using a Rieman...
Relativistic hydrodynamics is a very successful theoretical framework to describe the dynamics of ma...
We assess the suitability of a recent high-resolution central scheme developed by [CITE] for the sol...
Abstract. We review the evolution of the numerical techniques applied in relativistic hydrodynamics ...
In this paper, the general procedure to solve the General Relativistic Hydrodynamical(GRH) equations...
In this paper we present a full general relativistic one-dimensional hydro-code which incorporates a...
Multidimensional shock-capturing numerical schemes for special relativistic hydrodynamics (RHD) are ...
summary:We calculate self-consistent time-dependent models of astrophysical processes. We have devel...
We derive and analyze a simplified formulation of the numerical viscosity terms appearing in the exp...
WOS: 000242276600025In this paper, we have solved I-D special relativistic hydrodynamical equations ...
In an attempt to investigate the structures of ultra-relativistic jets injected into the intracluste...
We have developed a new computer code, RAM, to solve the conservative equations of special relativis...
A new code to simulate special relativistic hydrodynamic flows on supercomputer architectures with d...