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Observed and Modelled Convective Mixing-Layer Height at Dome C,Antarctica
Authors:Giampietro Casasanta  Ilaria Pietroni  Igor Petenko  Stefania Argentini
Affiliation:1. Institute of Atmospheric Sciences and Climate, CNR, via del Fosso del Cavaliere 100, 00133?, Rome, Italy
2. A.M. Obukhov Institute of Atmospheric Physics, RAS, Pyzhevskiy, 3, Moscow?, 119017, Russia
Abstract:The mixing-layer height is estimated using measurements from a high resolution surface-layer sodar run at the French-Italian station of Concordia at Dome C, Antarctica during the summer 2011–2012. The temporal and spatial resolution of the sodar allows the monitoring of the mixing-layer evolution during the whole diurnal cycle, i.e. a very shallow nocturnal boundary layer followed by a typical daytime growth. The behaviour of the summer mixing-layer height, variable between about 10- and 300 m, is analyzed as a function of the mean and turbulent structure of the boundary layer. Focusing on convective cases only, the retrieved values are compared with those calculated using a one-dimensional prognostic equation. The role of subsidence is examined and discussed. We show that the agreement between modelled and experimental values significantly increases if the subsidence is not kept fixed during the day. A simple diagnostic equation, which depends on the time-averaged integral of the near-surface turbulent heat flux, the background static stability and the buoyancy parameter, is proposed and evaluated. The diagnostic relation performance is comparable to that of the more sophisticated prognostic model.
Keywords:
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