We consider the resistance law for the planetary boundary layer (PBL) from the point of view of the similarity theory. In other words, we select the set of the PBL governing parameters and search for an optimal way to express through these parameters the geostrophic drag coefficient Cg=u*/Ug and the cross isobaric angle α(where u* is the friction velocity and Ug is the geostrophic wind speed). By this example, we demonstrate how to determine the “parameter space” in the most convenient way, so that make independent the dimensionless numbers representing co-ordinates in the parameter space, and to avoid (or at least minimise) artificial self- correlations caused by the appearance of the same factors (such as u*) in the examined dimensionless...
This thesis presents a study of strong stratification and turbulence collapse in the planetary bound...
Direct numerical simulation of the turbulent Ekman layer over a smooth wall is used to investigate b...
Accounting for the current knowledge of the Planetary Boundary Layer (PBL) structure and characteris...
International audienceWe consider the resistance law for the planetary boundary layer (PBL) from the...
In special issue: Turbulent transport in GeosciencesWe consider the resistance law for the planetary...
The turbulent flow in the unstratified Ekman layer over a smooth surface for the case of no horizont...
Modern large-scale models (LSMs) rely on surface drag coefficients to parameterize turbulent exchang...
The planetary boundary layer (PBL) resistance and heat-transfer laws express the surface fluxes of m...
The geostrophic drag law (GDL), which predicts the geostrophic drag coefficient and the cross-isobar...
Simple but rather general arguments permit the construction of a new version of similarity theory fo...
A new large eddy simulation (LES) code is developed and used to investigate non-local features of tu...
The von Karmãn constant (k) and the Monin-Obukhov similarity formulation occupy very important posit...
Turbulent planetary boundary layers (PBLs) control the exchange processes between the atmosphere and...
The lowest part of the atmosphere, which is directly influenced by Earth’s surface,is called the pla...
The turbulence equations as written by Donaldson using the method of invariant modeling have been ap...
This thesis presents a study of strong stratification and turbulence collapse in the planetary bound...
Direct numerical simulation of the turbulent Ekman layer over a smooth wall is used to investigate b...
Accounting for the current knowledge of the Planetary Boundary Layer (PBL) structure and characteris...
International audienceWe consider the resistance law for the planetary boundary layer (PBL) from the...
In special issue: Turbulent transport in GeosciencesWe consider the resistance law for the planetary...
The turbulent flow in the unstratified Ekman layer over a smooth surface for the case of no horizont...
Modern large-scale models (LSMs) rely on surface drag coefficients to parameterize turbulent exchang...
The planetary boundary layer (PBL) resistance and heat-transfer laws express the surface fluxes of m...
The geostrophic drag law (GDL), which predicts the geostrophic drag coefficient and the cross-isobar...
Simple but rather general arguments permit the construction of a new version of similarity theory fo...
A new large eddy simulation (LES) code is developed and used to investigate non-local features of tu...
The von Karmãn constant (k) and the Monin-Obukhov similarity formulation occupy very important posit...
Turbulent planetary boundary layers (PBLs) control the exchange processes between the atmosphere and...
The lowest part of the atmosphere, which is directly influenced by Earth’s surface,is called the pla...
The turbulence equations as written by Donaldson using the method of invariant modeling have been ap...
This thesis presents a study of strong stratification and turbulence collapse in the planetary bound...
Direct numerical simulation of the turbulent Ekman layer over a smooth wall is used to investigate b...
Accounting for the current knowledge of the Planetary Boundary Layer (PBL) structure and characteris...