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An Upwind-Biased Conservative Advection Scheme for Spherical Hexagonal-Pentagonal GridsMIURA, Hiroaki.Monthly weather review. 2007, Vol 135, Num 12, pp 4038-4044, issn 0027-0644, 7 p.Article

Compact upwind schemes on adaptive octreesMURMAN, Scott M.Journal of computational physics (Print). 2010, Vol 229, Num 4, pp 1167-1180, issn 0021-9991, 14 p.Article

A Linear Analysis of the NCAR CCSM Finite-Volume Dynamical CoreSKAMAROCK, William C.Monthly weather review. 2008, Vol 136, Num 6, pp 2112-2119, issn 0027-0644, 8 p.Article

Explicit and implicit computational mechanics: Techniques and parallel upwind monotone residual distribution solver for the time dependent ideal 3D magnetohydrodynamic equations on unstructured gridsCSIK, A; DE STERCK, H; RICCHIUTO, M et al.International conference on computational structures technologyInternational conference on engineering computational technology. 2000, pp 311-323, isbn 0-948749-68-7Conference Paper

Characteristics of quadrant and octant advection schemes in wave modelsCAVALERI, L; SCLAVO, M.Coastal engineering. 1998, Vol 34, Num 3-4, pp 221-242, issn 0378-3839Article

Upwind schemes with exact conservation property for one-dimensional open channel flow equationsVUKOVIC, Senka; SOPTA, Luka.SIAM journal on scientific computing (Print). 2003, Vol 24, Num 5, pp 1630-1649, issn 1064-8275, 20 p.Article

Multi-dimensional dissipation for cure of pathological behaviors of upwind schemeLOH, Ching Y; JORGENSON, Philip C. E.Journal of computational physics (Print). 2009, Vol 228, Num 5, pp 1343-1346, issn 0021-9991, 4 p.Article

A central-constrained transport scheme for ideal magnetohydrodynamicsZIEGLER, U.Journal of computational physics (Print). 2004, Vol 196, Num 2, pp 393-416, issn 0021-9991, 24 p.Article

An Upwind-Biased Transport Scheme Using a Quadratic Reconstruction on Spherical Icosahedral GridsMIURA, Hiroaki; SKAMAROCK, William C.Monthly weather review. 2013, Vol 141, Num 2, pp 832-847, issn 0027-0644, 16 p.Article

Reconstruction of river bed topography from free surface data using a direct numerical approach in one-dimensional shallow water flowGESSESE, A. F; SELLIER, M; VAN HOUTEN, E et al.Inverse problems. 2011, Vol 27, Num 2, issn 0266-5611, 025001.1-025001.12Article

Analysis of a new high resolution upwind compact schemeDE, A. K; ESWARAN, V.Journal of computational physics (Print). 2006, Vol 218, Num 1, pp 398-416, issn 0021-9991, 19 p.Article

Convective schemes for capturing interfaces of free-surface flows on unstructured gridsDARWISH, M; MOUKALLED, F.Numerical heat transfer. Part B, fundamentals. 2006, Vol 49, Num 1, pp 19-42, issn 1040-7790, 24 p.Article

Upwinding and implicit residual smoothing on cell-vertex unstructured gridsCATALANO, L. A; DALOISO, V. S. E.International journal for numerical methods in fluids. 2005, Vol 47, Num 8-9, pp 895-902, issn 0271-2091, 8 p.Conference Paper

Une méthode numérique décentrée pour la résolution d'écoulements diphasiques = A numerical method using upwind schemes for the resolution of two-phase flowsCOQUEL, F; EL AMINE, K; GODLEWSKI, E et al.Comptes rendus de l'Académie des sciences. Série 1, Mathématique. 1997, Vol 324, Num 6, pp 717-723, issn 0764-4442Article

Finite element integration for the control volume methodNEISES, J; STEINBACH, I.Communications in numerical methods in engineering. 1996, Vol 12, Num 9, pp 543-555, issn 1069-8299Article

A new pseudospectral method with upwind featuresWEIZHANG HUANG; SLOAN, D. M.IMA journal of numerical analysis. 1993, Vol 13, Num 3, pp 413-430, issn 0272-4979Article

On large time step TVD scheme for hyperbolic conservation laws and its efficiency evaluationZHANSENQIAN; LEE, Chun-Hian.Journal of computational physics (Print). 2012, Vol 231, Num 21, pp 7415-7430, issn 0021-9991, 16 p.Article

STABLE UPWIND SCHEMES FOR THE MAGNETIC INDUCTION EQUATIONFUCHS, Franz G; KAPLSEN, Kenneth H; MISHRA, Siddharta et al.Modélisation mathématique et analyse numérique (Imprimé). 2009, Vol 43, Num 5, pp 825-852, issn 0764-583X, 28 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

Achieving high-order fluctuation splitting schemes by extending the stencilHUBBARD, M. E; LAIRD, A. L.Computers & fluids. 2005, Vol 34, Num 4-5, pp 443-459, issn 0045-7930, 17 p.Article

Analysis of discrete adjoints for upwind numerical schemesZHENG LIU; SANDU, Adrian.Lecture notes in computer science. 2005, issn 0302-9743, isbn 3-540-26032-3, 3Vol, part II, 829-836Conference Paper

Applications of upwind and downwind schemes for calculating electrical conditions in a wire-plate electrostatic precipitatorHONG LEI; WANG, Lian-Ze; WU, Zi-Niu et al.Journal of computational physics (Print). 2004, Vol 193, Num 2, pp 697-707, issn 0021-9991, 11 p.Article

Three-dimensional distributed mass weighting for noninverted convective skew upwindingOGEDENGBE, E. O. B; NATERER, G. F.Journal of thermophysics and heat transfer. 2004, Vol 18, Num 4, pp 502-510, issn 0887-8722, 9 p.Conference Paper

A high-order upwind method for the convection-diffusion problemLIANG, D; ZHAO, W.Computer methods in applied mechanics and engineering. 1997, Vol 147, Num 1-2, pp 105-115, issn 0045-7825Article

Fully discrete high-order shock-capturing numerical schemesSHI, J; TORO, E. F.International journal for numerical methods in fluids. 1996, Vol 23, Num 3, pp 241-270, issn 0271-2091, 29 p.Article

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