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- W2051260518 abstract "The aim of this paper is twofold. First, it is difficult for a newcomer in the NumericalWeather Prediction (NWP) community to find similarities with Computational Fluid Dy-namics (CFD) techniques as far as the numerical methods of the dynamical cores in NWPare concerned. Different variables than the CFD traditional conservative one are used andseemingly different discretization techniques have been developed, whereas the very sameEuler equations are being solved in both cases. So the first aim is to compare and contrastthe main numerical elements used in both communities. The second aim consists in val-idating a CFD solver adapted to NWP to a set of traditional NWP benchmarks on fullynonstructured three dimensional configurations. It is shown that it produces accurate andlow diffusive results. The main advantages of this approach are the same than comparedto CFD finite difference solvers, namely scalability, adaptivity for localized phenomenaand geometrical flexibility. Pole singularities are trivially removed. Keywords: Numeri-cal Weather Prediction, Computational Fluid Dynamics, compressible explicit edge-basedHLLC solver, density current, gravity waves" @default.
- W2051260518 created "2016-06-24" @default.
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- W2051260518 date "2010-01-04" @default.
- W2051260518 modified "2023-09-25" @default.
- W2051260518 title "An Unstructured CFD Approach for Numerical Weather Prediction" @default.
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- W2051260518 doi "https://doi.org/10.2514/6.2010-691" @default.
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