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High resolution NVD differencing scheme for arbitrarily unstructured meshes (CROSBI ID 163383)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Jasak, Hrvoje ; Weller, H.G. ; Gosman, A.D. High resolution NVD differencing scheme for arbitrarily unstructured meshes // International journal for numerical methods in fluids, 31 (1999), 2; 431-449. doi: 10.1002/(SICI)1097-0363(19990930)31:2<431::AID-FLD884>3.0.CO;2-T

Podaci o odgovornosti

Jasak, Hrvoje ; Weller, H.G. ; Gosman, A.D.

engleski

High resolution NVD differencing scheme for arbitrarily unstructured meshes

The issue of boundedness in the discretisation of the convection term of transport equations has been widely discussed. A large number of local adjustment practices has been proposed, including the well-known total variation diminishing (TVD) and normalised variable diagram (NVD) families of differencing schemes. All of these use some sort of an 'unboundedness indicator' in order to determine the parts of the domain where intervention in the discretisation practice is needed. These, however, all use the 'far upwind' value for each face under consideration, which is not appropriate for unstructured meshes. This paper proposes a modification of the NVD criterion that localises it and thus makes it applicable irrespective of the mesh structure, facilitating the implementation of 'standard' bounded differencing schemes on unstructured meshes. Based on this strategy, a new bounded version of central differencing constructed on the compact computational molecule is proposed and its performance is compared with other popular differencing schemes on several model problems. The issue of boundedness in the discretisation of the convection term of transport equations has been widely discussed. A large number of local adjustment practices has been proposed, including the well-known total variation diminishing (TVD) and normalised variable diagram (NVD) families of differencing schemes. All of these use some sort of an 'unboundedness indicator' in order to determine the parts of the domain where intervention in the discretisation practice is needed. These, however, all use the 'far upwind' value for each face under consideration, which is not appropriate for unstructured meshes. This paper proposes a modification of the NVD criterion that localises it and thus makes it applicable irrespective of the mesh structure, facilitating the implementation of 'standard' bounded differencing schemes on unstructured meshes. Based on this strategy, a new bounded version of central differencing constructed on the compact computational molecule is proposed and its performance is compared with other popular differencing schemes on several model problems.

Boundedness ; Convection discretisation ; Unstructured meshes

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Podaci o izdanju

31 (2)

1999.

431-449

objavljeno

0271-2091

1097-0363

10.1002/(SICI)1097-0363(19990930)31:2<431::AID-FLD884>3.0.CO;2-T

Povezanost rada

Strojarstvo

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