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Open AccessJournal ArticleDOI

The Meso-NH Atmospheric Simulation System. Part I: adiabatic formulation and control simulations

TLDR
The Meso-NH Atmospheric Simulation Engine as mentioned in this paper is a tool for small and meso-scale atmospheric processes, which is based on the Lipps and Hemler form of the anelastic system.
Abstract
The Meso-NH Atmospheric Simulation Sys- tem is a joint eAort of the Centre National de Recher- ches Meteorologiques and Laboratoire d'Aerologie. It comprises several elements; a numerical model able to simulate the atmospheric motions, ranging from the large meso-alpha scale down to the micro-scale, with a comprehensive physical package, a flexible file manager, an ensemble of facilities to prepare initial states, either idealized or interpolated from meteorological analyses or forecasts, a flexible post-processing and graphical facility to visualize the results, and an ensemble of interactive procedures to control these functions. Some of the distinctive features of this ensemble are the following: the model is currently based on the Lipps and Hemler form of the anelastic system, but may evolve towards a more accurate form of the equations system. In the future, it will allow for simultaneous simulation of several scales of motion, by the so-called ''interactive grid-nesting technique''. It allows for the in-line com- putation and accumulation of various terms of the budget of several quantities. It allows for the transport and diAusion of passive scalars, to be coupled with a chemical module. It uses the relatively new Fortran 90 compiler. It is tailored to be easily implemented on any UNIX machine. Meso-NH is designed as a research tool for small and meso-scale atmospheric processes. It is freely accessible to the research community, and we have tried to make it as ''user-friendly'' as possible, and as general as possible, although these two goals sometimes appear contradictory. The present paper presents a general description of the adiabatic formulation and some of the basic validation simulations. A list of the currently available physical parametrizations and ini- tialization methods is also given. A more precise description of these aspects will be provided in a further paper.

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Citations
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Dispersion in the atmosphere of a pollutant drifting at the sea surface; galerne project

TL;DR: In this paper, a modelling system has been settled, which consists of the coupling of two models: the first one, MOTHY, is Meteo-France operational drift forecast system in case of marine pollution.
Journal ArticleDOI

Spurious effects of the deep convection parameterisation on the simulation of a Sahelian heatwave

TL;DR: In this article , the authors analyse the ability of a mesoscale limited-area model to represent such an event and investigate the advantage of using an explicit representation of deep convection for such a case associated with very limited precipitation amounts.
Dissertation

Etude expérimentale et numérique de l'influence des processus de transport depuis la couche-limite sur la variabilité et le bilan d'ozone troposphérique.

TL;DR: In this paper, a multivariable algorithm for classification of couches d'ozone mesurees par sondage is presented, and compared with a methodologie repose sur une analyse des donnees collectees par une approche hybride lagrangienne associant des analyses meteorologiques globales.

Deep Convection Events Above The Tunuyan Valley Near The Andes Mountains

TL;DR: In this paper, a case of deep convection that occurred on 22 January 2001 is studied in detail through a combined analysis of radar, satellite, and radiosonde data and numerical simulations using a nonhydrostatic mesoscale atmospheric (Meso-NH) model.
Proceedings ArticleDOI

PSF nowcast using PASSATA simulations: towards a PSF forecast

TL;DR: In this article , the authors study the feasibility of using simulation tools for nowcast application (present-time forecast), such as the characterization of an on-sky measured PSF in real observations.
References
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Journal ArticleDOI

Fully multidimensional flux-corrected transport algorithms for fluids

TL;DR: In this paper, the critical flux limiting stage is implemented in multidimensions without resort to time splitting, which allows the use of flux-corrected transport (FCT) techniques in multi-dimensional fluid problems for which time splitting would produce unacceptable numerical results.
Journal ArticleDOI

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Journal ArticleDOI

A Simple Boundary Condition for Unbounded Hyperbolic Flows

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Book ChapterDOI

Convective parameterization for mesoscale models : The Kain-Fritsch Scheme

TL;DR: The Kain-Fritsch (KF) convective parameterization scheme (CPS) is based on the same fundamental closure assumption as the Fritsch-Chappell (FC) (1980) scheme as mentioned in this paper.
Book ChapterDOI

On the distribution and continuity of water substance in atmospheric circulations

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