|
Volumn 227, Issue 7, 2008, Pages 3429-3430
|
Predicting weather, climate and extreme events
|
Author keywords
Air quality forecasting; Aqua planet experiments; Atmospheric general circulation models; Biogeochemical cycles; Climate change; Climate modelling; Climate simulation; Cloud clusters; Cloud resolving model; Compressible flow; Conservation; Data assimilation; El Nino southern oscillation; Finite difference; Four wave interactions; Garden Sprinkler effect; History of NWP; Icosahedral grids; Incompressible Navier Stokes equations; Kalman filter; Numerical methods; Numerical weather prediction; Ozone pollution; Physics dynamics coupling; Predictability; Prediction; Regional climate model; Regional ocean prediction; Sea ice modelling; Semi implicit; Semi Lagrangian; Split explicit time stepping; Time staggered; Turbulence; Uncertainty; Wave forecasting; Wind input
|
Indexed keywords
AIR QUALITY;
ATMOSPHERIC MOVEMENTS;
ATMOSPHERIC PRESSURE;
CLIMATE CHANGE;
CLIMATE MODELS;
INCOMPRESSIBLE FLOW;
KALMAN FILTERS;
NAVIER STOKES EQUATIONS;
UNCERTAINTY ANALYSIS;
WEATHER FORECASTING;
AIR QUALITY FORECASTING;
AQUA PLANET;
AQUA-PLANET EXPERIMENT;
ATMOSPHERIC GENERAL CIRCULATION MODELS;
ATMOSPHERIC GENERAL-CIRCULATION MODEL;
BIOGEOCHEMICAL CYCLE;
CLIMATE MODELING;
CLIMATE SIMULATION;
CLOUD CLUSTERS;
CLOUD RESOLVING MODEL;
DATA ASSIMILATION;
DYNAMICS COUPLING;
EL NINO SOUTHERN OSCILLATION;
FINITE-DIFFERENCE;
FOUR-WAVE INTERACTIONS;
GARDEN SPRINKLER EFFECTS;
HISTORY OF NWP;
ICOSAHEDRAL GRID;
INCOMPRESSIBLE (NAVIER )STOKES EQUATION;
INCOMPRESSIBLE NAVIER STOKES EQUATIONS;
NUMERICAL WEATHER PREDICTION;
OZONE POLLUTION;
PHYSIC-DYNAMIC COUPLING;
PREDICTABILITY;
REGIONAL CLIMATE MODELING (RCM);
REGIONAL OCEAN PREDICTION;
SEA ICE MODELING;
SEMI-IMPLICIT;
SEMI-LAGRANGIAN;
SPLIT-EXPLICIT TIME STEPPING;
TIME-STAGGERED;
TIME-STEPPING;
UNCERTAINTY;
WAVE FORECASTING;
WIND INPUT;
NUMERICAL METHODS;
|
EID: 39749089223
PISSN: 00219991
EISSN: 10902716
Source Type: Journal
DOI: 10.1016/j.jcp.2008.01.001 Document Type: Editorial |
Times cited : (17)
|
References (0)
|