Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hydrodynamics (SPH) code. The SPH quantities were calculated by using spatially adaptive smoothing lengths and the SPH fluid equations of motion were solved by means of a hierarchical multiple time-scale leapfrog. Such a combination of methods allows the code to deal with a large range of hydrodynamic quantities. A careful treatment of gas cooling by H, H2, CO and HI
We present simulations of supersonic collisions between molecular clouds of mass 500 M⊙ and radius 2...
This thesis presents numerical investigations of interstellar gas under various conditions. Discrete...
We present a new algorithm for simulating two-fluid gas and dust mixtures in Smoothed Par-ticle Hydr...
Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hy...
Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hy...
We investigate, by means of numerical simulations, the phenomenology of star formation triggered by ...
Smooth Pattick Hydrrxiynamics (SPH) is a new computational technique well suited to computation of h...
We present an implementation of smoothed particle hydrodynamics (SPH) with improved accuracy for sim...
We adapt the smoothed-particle hydrodynamics (SPH) technique to allow a multiphase fluid in which SP...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
The method known as Smoothed Particle Hydrodynamics (SPH) is an important tool in modern numerical ...
. Smoothed Particle Hydrodynamics (SPH) is a particle method to simulate compressible fluids. First ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
The numerical method, SPH, was first developed to model astrophysical problems. It has since been su...
AbstractSmoothed particle hydrodynamics is a multidimensional Lagrangian method of numerical hydrody...
We present simulations of supersonic collisions between molecular clouds of mass 500 M⊙ and radius 2...
This thesis presents numerical investigations of interstellar gas under various conditions. Discrete...
We present a new algorithm for simulating two-fluid gas and dust mixtures in Smoothed Par-ticle Hydr...
Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hy...
Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hy...
We investigate, by means of numerical simulations, the phenomenology of star formation triggered by ...
Smooth Pattick Hydrrxiynamics (SPH) is a new computational technique well suited to computation of h...
We present an implementation of smoothed particle hydrodynamics (SPH) with improved accuracy for sim...
We adapt the smoothed-particle hydrodynamics (SPH) technique to allow a multiphase fluid in which SP...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
The method known as Smoothed Particle Hydrodynamics (SPH) is an important tool in modern numerical ...
. Smoothed Particle Hydrodynamics (SPH) is a particle method to simulate compressible fluids. First ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
The numerical method, SPH, was first developed to model astrophysical problems. It has since been su...
AbstractSmoothed particle hydrodynamics is a multidimensional Lagrangian method of numerical hydrody...
We present simulations of supersonic collisions between molecular clouds of mass 500 M⊙ and radius 2...
This thesis presents numerical investigations of interstellar gas under various conditions. Discrete...
We present a new algorithm for simulating two-fluid gas and dust mixtures in Smoothed Par-ticle Hydr...