A 3-dimensional variational data assimilation (3D-Var) scheme for the HIgh Resolution Limited Area Model (HIRLAM) forecasting system is described. The HIRLAM 3D-Var is based on the minimisation of a cost function that consists of one term, J(b), which measures the distance between the resulting analysis and a background field, in general a short-range forecast, and another term. J(o), which measures the distance between the analysis and the observations. This paper is concerned with J(o) and the handling of observations, while the companion Paper by Gustafsson et al. (2001) is concerned with the general 3D-Var formulation and with the J(b) term. Individual system components. such as the screening of observations and the observation operator...
A three-dimensional variational data assimilation (3D-Var) scheme has been devel-oped for the HIgh R...
Two different approaches for improving the representation of background error standard deviations ha...
International audienceWe address the problem of how to take advantage, in a limited-area variational...
A 3-dimensional variational data assimilation (3D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A four-dimensional ensemble variational (4D-EnVar) data assimilation has been developed for a limite...
A four-dimensional ensemble variational (4D-EnVar) data assimilation has been developed for a limite...
The limited area model forecasting problem is a lateral boundary condition (LBC) problem in addition...
The limited area model forecasting problem is a lateral boundary condition (LBC) problem in addition...
A signicant attempt to design a timesaving and ecient four-dimensional variational data assimilation...
A three-dimensional variational data assimilation (3D-Var) scheme has been devel-oped for the HIgh R...
Two different approaches for improving the representation of background error standard deviations ha...
International audienceWe address the problem of how to take advantage, in a limited-area variational...
A 3-dimensional variational data assimilation (3D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A 4-dimensional variational data assimilation (4D-Var) scheme for the HIgh Resolution Limited Area M...
A four-dimensional ensemble variational (4D-EnVar) data assimilation has been developed for a limite...
A four-dimensional ensemble variational (4D-EnVar) data assimilation has been developed for a limite...
The limited area model forecasting problem is a lateral boundary condition (LBC) problem in addition...
The limited area model forecasting problem is a lateral boundary condition (LBC) problem in addition...
A signicant attempt to design a timesaving and ecient four-dimensional variational data assimilation...
A three-dimensional variational data assimilation (3D-Var) scheme has been devel-oped for the HIgh R...
Two different approaches for improving the representation of background error standard deviations ha...
International audienceWe address the problem of how to take advantage, in a limited-area variational...