Multi-grid solution of Euler's equations on unstructured grids
Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 34 (1994) no. 12, pp. 1867-1883 Cet article a éte moissonné depuis la source Math-Net.Ru

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V. S. Sakovich. Multi-grid solution of Euler's equations on unstructured grids. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 34 (1994) no. 12, pp. 1867-1883. http://geodesic.mathdoc.fr/item/ZVMMF_1994_34_12_a9/

[1] Jameson A., Baker T. J., Weatherill N. P., Calculation of invicsid transonic flow over a complete aircraft, AIAA Paper 86-0103, 1986

[2] Peiro J., Peraire J., Morgan K., etc., The numerical simulation of flow about installed aero engine nacelle using a finite element Euler solver on unstructured meshes, AIAA Paper 92-1845, 1992

[3] Mavriplis D. J., “Accurate multigrid solution of the Euler equation on unstructured and adaptive meshes”, AIAA Journal, 28:2 (1990), 213–221 | DOI

[4] Staufflet B., Periaux J., Fezoui F., Dervieux A., Numerical simulation of 3-d hypersonic Euler flows around space vehicles using adapted finite elements, AIAA Paper 87-0560, 1987

[5] Sorokin A. M., Numer. Grid Generation in Comput. Fluid Dynamics and Related Fields (6th–8th April 1994, Swansea, Wales)

[6] Jameson A., Schmidt W., Turkel E., Numerical solution of the Euler equations by finite volume methods using Runge–Kutta time stepping schemes, AIAA Paper 81-1259, 1981 | Zbl

[7] Ni R. H., “A multiple grid scheme for solving the Euler equations”, AIAA Journal, 20 (1982), 1565–1571 | DOI | Zbl

[8] Mavriplis D., Jameson A., Multigrid solution of the two-dimensional Euler equations on unstructured triangular meshes, AIAA Paper 87-0353, 1987 | Zbl

[9] Williams B. R., An exact test case for the plane potential flow about two adjecent lifting aerofoils, Techn. Rept 71197, Roy. Aircraft Establishment, September, 1971

[10] Suddhoo A., Hall I. V., “Test cases for the plane potential flow past multi – element aerofoils”, Aeronout. J., 89:890 (1985), 403–414

[11] Thomas J. L., Solas M. D., Far-field boundary conditions for transonic lifting solutions to the Euler equations, AIAA Paper 85-0020, 1985

[12] Siclary M. J., “Tree-dimensional hybrid finite volume solutions to the Euler equations for supersonic vehicles”, Comput. and Structures, 30:1/2 (1988), 233–246 | DOI

[13] Frink N. T., “Upwind scheme for solving the Euler equations on unstructured terahedral meshes”, AIAA Journal, 30:1 (1992), 70–77 | DOI | Zbl

[14] Barth T. J., Jespersen D. C., The design and application of upwind schemes on unstructured meshes, AIAA Paper 89-0366, 1989

[15] Sakovich V. S., “Mnogosetochnyi algoritm integrirovaniya uravnenii Eilera dlya rascheta obtekaniya profilya transzvukovym potokom”, Tr. TsAGI, 2517, M., 1991