How to properly consider the impacts of non-hydrostatic perturbations is one of the challenging issues in developing non-hydrostatic dynamics solvers (NHDSs) for high-resolution atmospheric models. To overcome the drawbacks of current approaches to tackling this issue, this study analyzed the differences between hydrostatic dynamics solvers (HDSs) and their non-hydrostatic counterparts. The analysis then motivated a flexible approach to adjusting existing hydrostatic atmospheric models, especially those adopted in climate simulations for the impacts of non-hydrostatic perturbations. In this approach, the impacts of non-hydrostatic perturbations, reflecting the differences between HDSs and NHDSs, were encapsulated into a single term in the v...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Six strategies to couple the dynamical core with physical parameterizations in atmospheric models ar...
In recent years, there has been extensive study of the mathematical basis of weather prediction lead...
Traditionally, numerical models for simulating planetary scale weather and climate employ the hydros...
The very first numerical models which were developed more than 20 years ago were drastic simplificat...
This thesis demonstrates a new non-staggered-grid finite-volume method for dynamical cores in atmosp...
This thesis demonstrates a new non-staggered-grid finite-volume method for dynamical cores in atmosp...
The present investigation is concerned with the role of convection upon mesoscale modeling results, ...
Traditionally, numerical models for simulating planetary scale weather and climate employ the hydros...
In global atmospheric modeling, the differences between nonhydrostatic (NH) and hydrostatic (H) dyna...
International audienceGeophysical models of the atmosphere and ocean invariably involve parameteriza...
International audienceGeophysical models of the atmosphere and ocean invariably involve parameteriza...
As the sigma-p coordinate under hydrostatic approximation can be interpreted as the mass coordinate ...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Six strategies to couple the dynamical core with physical parameterizations in atmospheric models ar...
In recent years, there has been extensive study of the mathematical basis of weather prediction lead...
Traditionally, numerical models for simulating planetary scale weather and climate employ the hydros...
The very first numerical models which were developed more than 20 years ago were drastic simplificat...
This thesis demonstrates a new non-staggered-grid finite-volume method for dynamical cores in atmosp...
This thesis demonstrates a new non-staggered-grid finite-volume method for dynamical cores in atmosp...
The present investigation is concerned with the role of convection upon mesoscale modeling results, ...
Traditionally, numerical models for simulating planetary scale weather and climate employ the hydros...
In global atmospheric modeling, the differences between nonhydrostatic (NH) and hydrostatic (H) dyna...
International audienceGeophysical models of the atmosphere and ocean invariably involve parameteriza...
International audienceGeophysical models of the atmosphere and ocean invariably involve parameteriza...
As the sigma-p coordinate under hydrostatic approximation can be interpreted as the mass coordinate ...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Correct representation of physical processes, the parametrizations, and their interaction with the r...
Six strategies to couple the dynamical core with physical parameterizations in atmospheric models ar...