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Author Julia Maillard, François Ravetta, Jean-Christophe Raut, Gilberto J. Fochesatto, Kathy S. Law doi  openurl
  Title Modulation of Boundary-Layer Stability and the Surface Energy Budget by a Local Flow in Central Alaska Type Journal
  Year (down) 2022 Publication Boundary-Layer Meteorology Abbreviated Journal  
  Volume 185 Issue 3 Pages 395-414  
  Keywords High latitude Local flow Surface energy budget Surface temperature inversion Winter  
  Abstract The pre-ALPACA (Alaskan Layered Pollution And Chemical Analysis) 2019 winter campaign took place in Fairbanks, Alaska, in November–December 2019. One objective of the campaign was to study the life-cycle of surface-based temperature inversions and the associated surface energy budget changes. Several instruments, including a 4-component radiometer and sonic anemometer were deployed in the open, snow-covered University of Alaska Fairbanks (UAF) Campus Agricultural Field. A local flow from a connecting valley occurs at this site. This flow is characterized by locally elevated wind speeds (greater than 3 m s$$^{-1}$$) under clear-sky conditions and a north-westerly direction. It is notably different to the wind observed at the airport more than 3.5 km to the south-west. The surface energy budget at the UAF Field site exhibits two preferential modes. In the first mode, turbulent sensible heat and net longwave fluxes are close to 0 W m$$^{-2}$$, linked to the presence of clouds and generally low winds. In the second, the net longwave flux is around − 50 W m$$^{-2}$$and the turbulent sensible heat flux is around 15 W m$$^{-2}$$, linked to clear skies and elevated wind speeds. The development of surface-based temperature inversions at the field is hindered compared to the airport because the local flow sustains vertical mixing. In this second mode the residual of the surface energy budget is large, possibly due to horizontal temperature advection.  
  Programme 1215  
  Campaign  
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1573-1472 ISBN Medium  
  Area Expedition Conference  
  Notes Approved yes  
  Call Number Serial 8501  
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