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Arakawa grids

Known as: Arakawa D-grid, Arakawa B-grid, Staggered grid 
The Arakawa grid system depicts different ways to represent and compute orthogonal physical quantities (especially velocity- and mass-related… Expand
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Papers overview

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Highly Cited
2009
Highly Cited
2009
The elastic-viscous-plastic (EVP) sea ice rheology has been introduced in the large-scale Louvain-la-Neuve sea-Ice Model, version… Expand
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Highly Cited
2009
Highly Cited
2009
A new high-resolution code for the direct simulation of incompressible boundary layers over a flat plate is described. It can… Expand
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Highly Cited
2008
Highly Cited
2008
Here it is documented how an existing code for modelling mantle convection in a cartesian domain, Stag3D, has been converted to… Expand
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Highly Cited
2008
Highly Cited
2008
In this paper, we develop a numerical method to solve Boltzmann like equations of kinetic theory which is able to capture the… Expand
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Highly Cited
2004
Highly Cited
2004
SUMMARY We compare different finite-difference schemes for two-dimensional (2-D) acoustic frequency-domain forward modelling… Expand
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Highly Cited
2000
Highly Cited
2000
We consider solving three-dimensional electromagnetic problems in parameter regimes where the quasi-static approximation applies… Expand
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Highly Cited
1999
Highly Cited
1999
X. Cai, E. Acklam, H. P. Langtangen, A. Tveito: Parallel Computing.- X. Cai: Overlapping Domain Decomposition Methods.- K.-A… Expand
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Highly Cited
1999
Highly Cited
1999
Abstract Tests of two fault boundary conditions show that each converges with second order accuracy as the finite-difference grid… Expand
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Highly Cited
1998
Highly Cited
1998
A numerical technique (FGVT) for solving the time-dependent incompressible Navier-Stokes equations in fluid flows with large… Expand
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Highly Cited
1992
Highly Cited
1992
This report describes and documents the theoretical and computational aspects of a three-dimensional computer code for… Expand
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