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meteorology & atmospheric sciences (5) 5
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Ocean Modelling, ISSN 1463-5003, 10/2017, Volume 118, pp. 31 - 40
•Spurious short-wave baroclinic instabilities on the Lorenz grid grow as fast as the Eady mode.•They can be simulated by equations which reduce to a quadratic... 
Potential vorticity | Lorenz grid | Baroclinic instability | Charney–Phillips grid | SYSTEM | ENERGY | PRIMITIVE EQUATIONS | STABILITY | OCEANOGRAPHY | Charney-Phillips grid | METEOROLOGY & ATMOSPHERIC SCIENCES | COORDINATE | ATMOSPHERE
Journal Article
Quarterly Journal of the Royal Meteorological Society, ISSN 0035-9009, 01/2003, Volume 129, Issue 589, pp. 1051 - 1069
The minimal three‐layer hurricane model developed by the authors is reformulated with a Charney–Phillips grid (CP‐grid) in the vertical instead of the Lorenz... 
Charney–Phillips grid | Computational mode | Charney-Phillips grid | computational mode | NUMERICAL-MODEL | PRIMITIVE EQUATIONS | SEA INTERACTION THEORY | TROPICAL CYCLONE MODEL | METEOROLOGY & ATMOSPHERIC SCIENCES
Journal Article
Quarterly Journal of the Royal Meteorological Society, ISSN 0035-9009, 04/2010, Volume 136, Issue 648, pp. 799 - 814
Journal Article
Quarterly Journal of the Royal Meteorological Society, ISSN 0035-9009, 04/2004, Volume 130, Issue 599, pp. 1505 - 1530
A vertical finite‐element (FE) discretization designed for the European Centre for Medium‐Range Weather Forecasts (ECMWF) model with semi‐Lagrangian advection... 
Eigenmodes | Hat functions | Integral operator | Charney–Phillips staggering | B‐splines | Lorenz staggering | Galerkin method | Charney-Phillips staggering | B-splines | LAGUERRE POLYNOMIALS | ENERGY | DIFFERENCE SCHEME | eigenmodes | integral operator | hat functions | ATMOSPHERE | PRIMITIVE EQUATION MODELS | NUMERICAL MODELS | METEOROLOGY & ATMOSPHERIC SCIENCES | COORDINATE
Journal Article
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