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Logo: Institut für Meteorologie und Klimatologie/Leibniz Universität Hannover
Logo Leibniz Universität Hannover
Logo: Institut für Meteorologie und Klimatologie/Leibniz Universität Hannover
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Publikationen


2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006 2005 2004 2003 2002 2001 2000 1999 1998 1997 alle Jahre

Journale

Iwado, T., R. Moriwaki, S. Raasch and M.O. Letzel (2011): Numerical experiments on turbulent flow within and above urban canopies with different building aspect ratio (in Japanese)., Annual J. Hydraulic Eng., JSCE, 55, S331-S336.

Noh, Y, G. Goh and S. Raasch (2011): Influence of Langmuir Circulation on the Deepening of the Wind-Mixed Layer, J. Phys. Oceanogr., 41, 472-484
DOI: 10.1175/2010JPO4494.1

Raasch, S. and T. Franke (2011): Structure and formation of dust devil-like vortices in the atmospheric boundary layer: A high-resolution numerical study., J. Geophys. Res.
DOI: 10.1029/2011JD016010

Konferenzbeiträge

Franke, T., R. Kunnen and H. Noppel (2011): The influence of cloud turbulence on droplet growth and precipitation, International Metström Conference, Multiple Scales in Fluid Dynamics and Meteorology, 06-10 June 2011 - Berlin, Germany weitere Informationen

Heinze, R. and S. Raasch (2011): Atmospheric vortex streets: structure and properties derived from large eddy simulations, European Geosciences Union, General Assembly 2011, 03–08 April 2011 - Vienna, Austria weitere Informationen

Heinze, R., S. Raasch and D. Mironov (2011): Budgets of second order moments for cloudy boundary layers derived from LES, 13th COSMO General Meeting, Rome, Italy weitere Informationen

Voß, L. and S. Raasch (2011): The influence of small scale heterogeneities on the near surface turbulence structure and the energy balance closure, European Geosciences Union, General Assembly 2011, 03–08 April 2011 - Vienna, Austria weitere Informationen

Master-/Diplomarbeiten

Fricke, Jens (2011): Coriolis Instabilities in Coupled Atmosphere-Ocean Large-Eddy Simulations

Bachelorarbeiten

Hoffmann, Fabian (2011): Auswirkungen numerischer Verfahren auf die Stärke simulierter Staubteufel