Results from an idealized three-dimensional baroclinic life-cycle model are interpreted in a potential vorticity (PV) framework to identify the physical mechanisms by which frictional processes acting in the atmospheric boundary layer modify and reduce the baroclinic development of a midlatitude storm. Considering a life cycle where the only non-conservative process acting is boundary-layer friction, the rate of change of depth-averaged PV within the boundary layer is governed by frictional generation of PV and the flux of PV into the free troposphere. Frictional generation of PV has two contributions: Ekman generation, which is directly analogous to the well-known Ekman-pumping mechanism for barotropic vortices, and baroclinic generation, ...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
Results from an idealized three-dimensional baroclinic life-cycle model are interpreted in a potenti...
Results from an idealized three-dimensional baroclinic life-cycle model are interpreted in a potenti...
A dry three-dimensional baroclinic life cycle model is used to investigate the role of turbulent flu...
The mechanism by which the atmospheric boundary layer reduces the intensity of mid-latitude cyclones...
Mid-latitude weather systems are key contributors to the transport of atmospheric water vapour, but...
Arctic cyclones are the most energetic weather systems in the Arctic, producing strong winds and pr...
The article of record as published may be found at http://dx.doi.org/10.1002/qj.3104A recent idealiz...
Arctic cyclones are the most energetic weather systems in the Arctic, producing strong winds and pr...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
Arctic cyclones are the most energetic weather systems in the Arctic, producing strong winds and pr...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
Results from an idealized three-dimensional baroclinic life-cycle model are interpreted in a potenti...
Results from an idealized three-dimensional baroclinic life-cycle model are interpreted in a potenti...
A dry three-dimensional baroclinic life cycle model is used to investigate the role of turbulent flu...
The mechanism by which the atmospheric boundary layer reduces the intensity of mid-latitude cyclones...
Mid-latitude weather systems are key contributors to the transport of atmospheric water vapour, but...
Arctic cyclones are the most energetic weather systems in the Arctic, producing strong winds and pr...
The article of record as published may be found at http://dx.doi.org/10.1002/qj.3104A recent idealiz...
Arctic cyclones are the most energetic weather systems in the Arctic, producing strong winds and pr...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
Arctic cyclones are the most energetic weather systems in the Arctic, producing strong winds and pr...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...
International audience[1] The motion of mid-latitude surface cyclones relative to the jet streams is...