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conference presentation

Separating local topography from snow effects on momentum roughness in mountain regions

Diebold, Marc  
•
Katul, Gabriel
•
Calaf, Marc  
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2013
AGU 2013

Parametrization of momentum surface roughness length in mountainous regions continues to be an active research topic given its application to improved weather forecasting and sub-grid scale representation of mountainous regions in climate models. A field campaign was conducted in the Val Ferret watershed (Swiss Alps) to assess the role of topographic variability and snow cover on momentum roughness. To this end, turbulence measurements in a mountainous region with and without snow cover have been analyzed. A meteorological mast with four sonic anemometers together with temperature and humidity sensors was installed at an elevation of 2500 m and data were obtained from October 2011 until May 2012. Because of the long-term nature of these experiments, natural variability in mean wind direction allowed a wide range of terrain slopes and snow depths to be sampled. A theoretical framework that accounted only for topographically induced pressure perturbations in the mean momentum balance was used to diagnose the role of topography on the effective momentum roughness height as inferred from the log-law. Surface roughness depended systematically on wind direction but was not significantly influenced by the presence of snow depth variation. Moreover, the wind direction and so the surface roughness influenced the normalized turbulent kinetic energy, which in theory should not depend on these factors in the near-neutral atmospheric surface layer. The implications of those findings to modeling momentum roughness heights and turbulent kinetic energy (e.g. in conventional K-epsilon closure) in complex terrain are briefly discussed.

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Type
conference presentation
Author(s)
Diebold, Marc  
Katul, Gabriel
Calaf, Marc  
Lehning, Michael  
Parlange, Marc  
Date Issued

2013

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
CRYOS  
EFLUM  
Event nameEvent placeEvent date
AGU 2013

San Francisco, USA

December 9-13, 2013

Available on Infoscience
March 10, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/101532
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