Pascal and Francis Bibliographic Databases

Help

Search results

Your search

kw.\*:("Godunov scheme")

Document Type [dt]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Language

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 25 of 146

  • Page / 6
Export

Selection :

  • and

A cell-centered Lagrangian hydrodynamics scheme on general unstructured meshes in arbitrary dimensionCARRE, G; DEL PINO, S; DESPRES, B et al.Journal of computational physics (Print). 2009, Vol 228, Num 14, pp 5160-5183, issn 0021-9991, 24 p.Article

On the computation of multi-material flows using ALE formulationHONG LUO; BAUM, Joseph D; LÖHNER, Rainald et al.Journal of computational physics (Print). 2004, Vol 194, Num 1, pp 304-328, issn 0021-9991, 25 p.Article

The influence of cell geometry on the Godunov scheme applied to the linear wave equationDELLACHERIE, Stéphane; OMNES, Pascal; RIEPER, Felix et al.Journal of computational physics (Print). 2010, Vol 229, Num 14, pp 5315-5338, issn 0021-9991, 24 p.Article

Thermal propagation in solids due to surface laser pulsation and oscillationLAM, Tung T.International journal of thermal sciences. 2010, Vol 49, Num 9, pp 1639-1648, issn 1290-0729, 10 p.Article

Applications of the finite volumes method for complex flows : From the theory to the practiceHELLUY, Philippe; GOLAY, Frédéric.Flow, turbulence and combustion. 2006, Vol 76, Num 4, pp 315-329, issn 1386-6184, 15 p.Conference Paper

A direct Eulerian GRP scheme for relativistic hydrodynamics: One-dimensional caseZHICHENG YANG; PENG HE; HUAZHONG TANG et al.Journal of computational physics (Print). 2011, Vol 230, Num 22, pp 7964-7987, issn 0021-9991, 24 p.Article

Second-order entropy diminishing scheme for the Euler equationsCOQUEL, F; HELLUY, P; SCHNEIDER, J et al.International journal for numerical methods in fluids. 2006, Vol 50, Num 9, pp 1029-1061, issn 0271-2091, 33 p.Article

Some mathematical results on a system of transport equations with an algebraic constraint describing fixed-bed adsorption of gasesBOURDARIAS, C; GISCLON, M; JUNCA, S et al.Journal of mathematical analysis and applications. 2006, Vol 313, Num 2, pp 551-571, issn 0022-247X, 21 p.Article

Entropy viscosity method for nonlinear conservation lawsGUERMOND, Jean-Luc; PASQUETTI, Richard; POPOV, Bojan et al.Journal of computational physics (Print). 2011, Vol 230, Num 11, pp 4248-4267, issn 0021-9991, 20 p.Article

Self-adjusting, positivity preserving high order schemes for hydrodynamics and magnetohydrodynamicsBALSARA, Dinshaw S.Journal of computational physics (Print). 2012, Vol 231, Num 22, pp 7504-7517, issn 0021-9991, 14 p.Article

SIMULATIONS OF MAGNETOROTATIONAL TURBULENCE WITH A HIGHER-ORDER GODUNOV SCHEMESIMON, Jacob B; HAWLEY, John F; BECKWITH, Kris et al.The Astrophysical journal. 2009, Vol 690, Num 1, pp 974-997, issn 0004-637X, 24 p., 1Article

An unsplit Godunov method for ideal MHD via constrained transportGARDINER, Thomas A; STONE, James M.Journal of computational physics (Print). 2005, Vol 205, Num 2, pp 509-539, issn 0021-9991, 31 p.Article

On numerical relativistic hydrodynamics and barotropic equations of stateIBANEZ, Jose Maria; CORDERO-CARRION, Isabel; MIRALLES, Juan Antonio et al.Classical and quantum gravity (Print). 2012, Vol 29, Num 15, issn 0264-9381, 157001.1-157001.6Article

Semi-Godunov schemes for multiphase flows in porous mediaKARLSEN, K. H; MISHRA, S; RISEBRO, N. H et al.Applied numerical mathematics. 2009, Vol 59, Num 9, pp 2322-2336, issn 0168-9274, 15 p.Conference Paper

Numerical entropy production and error indicator for compressible flowsGOLAY, Prédéric.Comptes rendus. Mécanique. 2009, Vol 337, Num 4, pp 233-237, issn 1631-0721, 5 p.Article

A Godunov-type method for the seven-equation model of compressible two-phase flowAMBROSO, A; CHALONS, C; RAVIART, P.-A et al.Computers & fluids. 2012, Vol 54, pp 67-91, issn 0045-7930, 25 p.Article

On the numerical solution of a driven thin film equationHA, Youngsoo; KIM, Yong-Jung; MYERS, Tim G et al.Journal of computational physics (Print). 2008, Vol 227, Num 15, pp 7246-7263, issn 0021-9991, 18 p.Article

Fast sweeping algorithms for a class of Hamilton-Jacobi equationsTSAI, Yen-Hsi Richard; CHENG, Li-Tien; OSHER, Stanley et al.SIAM journal on numerical analysis. 2004, Vol 41, Num 2, pp 673-694, issn 0036-1429, 22 p.Article

Computation of an explosion on an adaptive moving gridAZARENOK, B. N.Computational mathematics and mathematical physics. 2003, Vol 43, Num 6, pp 880-888, issn 0965-5425, 9 p.Article

Arbitrary high-order schemes for the linear advection and wave equations : application to hydrodynamics and aeroacousticsDEL PINO, Stéphane; JOURDREN, Hervé.Comptes rendus. Mathématique. 2006, Vol 342, Num 6, pp 441-446, issn 1631-073X, 6 p.Article

Space localization and well-balanced schemes for discrete kinetic models in diffusive regimesGOSSE, Laurent; TOSCANIT, Giuseppe.SIAM journal on numerical analysis. 2004, Vol 41, Num 2, pp 641-658, issn 0036-1429, 18 p.Article

The behaviour of the local error in splitting methods applied to stiff problemsKOZLOV, Roman; KVAERNØ, Anne; OWREN, Brynjulf et al.Journal of computational physics (Print). 2004, Vol 195, Num 2, pp 576-593, issn 0021-9991, 18 p.Article

Flux splitting schemes for the Euler equationsTORO, E. F; VAZQUEZ-CENDON, M. E.Computers & fluids. 2012, Vol 70, pp 1-12, issn 0045-7930, 12 p.Article

An improved reconstruction method for compressible flows with low Mach number featuresTHORNBER, B; MOSEDALE, A; DRIKAKIS, D et al.Journal of computational physics (Print). 2008, Vol 227, Num 10, pp 4873-4894, issn 0021-9991, 22 p.Article

A STABLE, ACCURATE METHODOLOGY FOR HIGH MACH NUMBER, STRONG MAGNETIC FIELD MHD TURBULENCE WITH ADAPTIVE MESH REFINEMENT: RESOLUTION AND REFINEMENT STUDIESPAK SHING LI; MARTIN, Daniel F; KLEIN, Richard I et al.The Astrophysical journal. 2012, Vol 745, Num 2, issn 0004-637X, 139.1-139.13, 1Article

  • Page / 6