collisions of particles with a solid surface; (3) determine the cell location of each particle; (4) on a statistical basis, This paper describes a new concept for the implementation of the direct simulation Monte Carlo (DSMC) method. It uses a localized compute collisions between particles occupying
Parallel implementation of the Iterative Monte Carlo method for the simulation of the presheath of an object immersed in a plasma
β Scribed by E. Martines; R. Cavazzana
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 632 KB
- Volume
- 103
- Category
- Article
- ISSN
- 0010-4655
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β¦ Synopsis
The lterative Monte Carlo method for the simulation of the presheath of an object immersed in a plasma has been implemented on the Cray T3D massively parallel computer. Two different approaches are discussed, and it is shown th~ both yield good performance as the number of processing elements grows. Simulations t~3r the case of a #asma moving along the magnetic field are presented and compared to an existing analytical model.
Adkuowle~ements
π SIMILAR VOLUMES
## Abstract A detailed analysis of the efficiency of a MonteβCarlo (MC) method employing nonβlocal moves for simple lattice ring polymers is presented. While the introduction of kinkβtranslocation moves for linear chains results in the expected speedup by a factor of the order of the number of site