Back to Search Start Over

Comparison and modification: TVD schemes for scalar transport on an unstructured grid.

Authors :
Zhang, Zhuo
Song, Zhi-yao
Guo, Fei
Zhang, Dong
Wen, Yong-ning
Hu, Di
Source :
China Ocean Engineering; Jul2016, Vol. 30 Issue 4, p615-626, 12p
Publication Year :
2016

Abstract

In most TVD schemes, the r-factors were proposed according to the cell-centered (CC) finite volume method (FVM) framework for the numerical approximation to the convective term. However, it is questionable whether those r-factors would be appropriate and effective for the vertex-centered (VC) FVM. In the paper, we collected five kinds of r-factor formulae and found out that only three of those, respectively by Bruner (1996), Darwish and Moukalled (2003) and Cassuli and Zanolli (2005) can be formally extended to a context of the VC FVM. Numerical tests indicate that the TVD schemes and r-factors, after being extended and introduced to a context of the VC FVM, maintained their similar characteristics as in a context of the CC FVM. However, when the gradient-based r-factors and the SUPERBEE scheme were applied simultaneously, non-physical oscillations near the sharp step would appear. In the transient case, the oscillations were weaker in a context of the VC FVM than those in a context of the CC FVM, while the effect was reversed in the steady case. To eliminate disadvantages in the gradient-based r-factor formula, a new modification method by limiting values on the virtual node, namely ϕ in the paper, was validated by the tests to effectively dissipate spurious oscillations. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08905487
Volume :
30
Issue :
4
Database :
Complementary Index
Journal :
China Ocean Engineering
Publication Type :
Academic Journal
Accession number :
117417753
Full Text :
https://doi.org/10.1007/s13344-016-0039-1