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, H(2), CO and H II, as well as a heating mechanism by cosmic rays and by H(2) production on grains surface, were also included in the code. The gas model reproduces approximately the typical environment of dark molecular clouds. The experiments were performed by impinging two dynamically identica...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
Context. Modern graphics processing units (GPUs) lead to a major increase in the performance of the ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hy...
We performed computer simulations of interstellar cloud-cloud collisions using the three-dimensional...
We investigate, by means of numerical simulations, the phenomenology of star formation triggered by ...
We present simulations of supersonic collisions between molecular clouds of mass 500 M⊙ and radius 2...
We study the effects of the supersonic collision of molecular clouds using smoothed particle hydrody...
This thesis presents numerical investigations of interstellar gas under various conditions. Discrete...
We performed computer simulations of interstellar cloud-cloud collisions using the three-dimensional...
A Lagrangian, particle-based numerical method (tree-code gravity plus smoothed particle hydrodynamic...
We studied the formation of stars from colliding molecular clouds by performing smoothed particle h...
We investigate, by means of numerical simulations, the phenomenology of star formation triggered by ...
In this paper, we present solutions to three short comings of smoothed particles hydrodynamics (SPH)...
. Smoothed Particle Hydrodynamics (SPH) is a particle method to simulate compressible fluids. First ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
Context. Modern graphics processing units (GPUs) lead to a major increase in the performance of the ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
Computer experiments of interstellar cloud collisions were performed with a new smoothed-particle-hy...
We performed computer simulations of interstellar cloud-cloud collisions using the three-dimensional...
We investigate, by means of numerical simulations, the phenomenology of star formation triggered by ...
We present simulations of supersonic collisions between molecular clouds of mass 500 M⊙ and radius 2...
We study the effects of the supersonic collision of molecular clouds using smoothed particle hydrody...
This thesis presents numerical investigations of interstellar gas under various conditions. Discrete...
We performed computer simulations of interstellar cloud-cloud collisions using the three-dimensional...
A Lagrangian, particle-based numerical method (tree-code gravity plus smoothed particle hydrodynamic...
We studied the formation of stars from colliding molecular clouds by performing smoothed particle h...
We investigate, by means of numerical simulations, the phenomenology of star formation triggered by ...
In this paper, we present solutions to three short comings of smoothed particles hydrodynamics (SPH)...
. Smoothed Particle Hydrodynamics (SPH) is a particle method to simulate compressible fluids. First ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...
Context. Modern graphics processing units (GPUs) lead to a major increase in the performance of the ...
Aims. Hydrodynamical instabilities and shocks are ubiquitous in astrophysical scenarios. Therefore, ...