In this work a new class of numerical methods for the BGK model of kinetic equations is presented. In principle, schemes of any order of accuracy in both space and time can be constructed with this technique. The methods proposed are based on an explicit–implicit time discretization. In particular the convec- tive terms are treated explicitly, while the source terms are implicit. In this fashion even problems with infinite stiffness can be integrated with relatively large time steps. The conservation properties of the schemes are investigated. Numerical results are shown for schemes of order 1, 2 and 5 in space, and up to third- order accurate in time.
Implicit-Explicit schemes for BGK kinetic equations / Pieraccini, S.; Puppo, GABRIELLA ANNA. - In: JOURNAL OF SCIENTIFIC COMPUTING. - ISSN 0885-7474. - 32:(2007), pp. 1-28. [10.1007/s10915-006-9116-6]
Implicit-Explicit schemes for BGK kinetic equations
PUPPO, GABRIELLA ANNA
2007
Abstract
In this work a new class of numerical methods for the BGK model of kinetic equations is presented. In principle, schemes of any order of accuracy in both space and time can be constructed with this technique. The methods proposed are based on an explicit–implicit time discretization. In particular the convec- tive terms are treated explicitly, while the source terms are implicit. In this fashion even problems with infinite stiffness can be integrated with relatively large time steps. The conservation properties of the schemes are investigated. Numerical results are shown for schemes of order 1, 2 and 5 in space, and up to third- order accurate in time.File | Dimensione | Formato | |
---|---|---|---|
Pieraccini_Implicit-explicit-schemes_2007.pdf
solo gestori archivio
Tipologia:
Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza:
Tutti i diritti riservati (All rights reserved)
Dimensione
397.83 kB
Formato
Adobe PDF
|
397.83 kB | Adobe PDF | Contatta l'autore |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.