FAST: A Fully Asynchronous Split Time-Integrator for Self-Gravitating Fluid
arXiv:0908.1460 · doi:10.1093/pasj/62.2.301
Abstract
We describe a new algorithm for the integration of self-gravitating fluid systems using SPH method. We split the Hamiltonian of a self-gravitating fluid system to the gravitational potential and others (kinetic and internal energies) and use different time-steps for their integrations. The time integration is done in the way similar to that used in the mixed variable or multiple stepsize symplectic schemes. We performed three test calculations. One was the spherical collapse and the other was an explosion. We also performed a realistic test, in which the initial model was taken from a simulation of merging galaxies. In all test calculations, we found that the number of time-steps for gravitational interaction were reduced by nearly an order of magnitude when we adopted our integration method. In the case of the realistic test, in which the dark matter potential dominates the total system, the total calculation time was significantly reduced. Simulation results were almost the same with those of simulations with the ordinary individual time-step method. Our new method achieves good performance without sacrificing the accuracy of the time integration.
14 pages, 8 figures, accepted for publication in PASJ
References in corpus (5)
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- The impact of radio feedback from active galactic nuclei in cosmological simulations: Formation of disk galaxies
- VINE -- A numerical code for simulating astrophysical systems using particles I: Description of the physics and the numerical methods
- VINE -- A numerical code for simulating astrophysical systems using particles II: Implementation and performance characteristics
- A Time-Symmetric Block Time-Step Algorithm for N-Body Simulations
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