This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on the development of the stable atmospheric boundary layer over land. Adding a first-order estimate for terrain drag to the turbulent drag appears to provide drag that is similar to the enhanced turbulent drag obtained with the so-called long-tail mixing functions. These functions are currently used in many operational models for weather and climate, although they lack a clear physical basis. Consequently, a simple and practical quasi-empirical parameterization of terrain drag divergence for use in large-scale models is proposed and is tested in a column mode. As an outcome, the cross-isobaric mass flow (a measure for cyclone filling) with the...
Modern large-scale models (LSMs) rely on surface drag coefficients to parameterize turbulent exchang...
Understanding and prediction of the stable atmospheric boundary layer is challenging. Many physical ...
The averaged Navier-Stokes equations that describe turbulent flows are not fully closed which makes ...
This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on...
This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on...
This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on...
The behaviour of turbulent boundary layers above complex terrain is of interest from several viewpoi...
At present atmospheric models for weather and climate use enhanced turbulent drag under stable condi...
The main objective of this thesis is to contribute to further understanding of the stable boundary l...
In the stable boundary layer (SBL) it is observed often that turbulence is not continuous in space a...
thesisNegatively buoyant forces in the stable boundary layer (SBL) damp turbulent motions, resulting...
We use the mesoscale meteorological model Meso-NH, taking the drag force of trees into account under...
In the stable boundary layer (SBL) it is observed often that turbulence is not continuous in space a...
In this paper a summary is given of the basic approaches for the modeling and parameterization of tu...
We review developments in the field of boundary-layer flow over complex topography, focussing on the...
Modern large-scale models (LSMs) rely on surface drag coefficients to parameterize turbulent exchang...
Understanding and prediction of the stable atmospheric boundary layer is challenging. Many physical ...
The averaged Navier-Stokes equations that describe turbulent flows are not fully closed which makes ...
This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on...
This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on...
This paper addresses the possible role of unresolved terrain drag, relative to the turbulent drag on...
The behaviour of turbulent boundary layers above complex terrain is of interest from several viewpoi...
At present atmospheric models for weather and climate use enhanced turbulent drag under stable condi...
The main objective of this thesis is to contribute to further understanding of the stable boundary l...
In the stable boundary layer (SBL) it is observed often that turbulence is not continuous in space a...
thesisNegatively buoyant forces in the stable boundary layer (SBL) damp turbulent motions, resulting...
We use the mesoscale meteorological model Meso-NH, taking the drag force of trees into account under...
In the stable boundary layer (SBL) it is observed often that turbulence is not continuous in space a...
In this paper a summary is given of the basic approaches for the modeling and parameterization of tu...
We review developments in the field of boundary-layer flow over complex topography, focussing on the...
Modern large-scale models (LSMs) rely on surface drag coefficients to parameterize turbulent exchang...
Understanding and prediction of the stable atmospheric boundary layer is challenging. Many physical ...
The averaged Navier-Stokes equations that describe turbulent flows are not fully closed which makes ...