Project Details
Turbulent heat transport in moist convection
Applicant
Professor Dr. Jörg Schumacher
Subject Area
Fluid Mechanics
Term
from 2009 to 2013
Project identifier
Deutsche Forschungsgemeinschaft (DFG) - Project number 108052399
Final Report Year
2011
Final Report Abstract
In the past period, we investigated the moist Rayleigh-Benard convection model in different parametric regimes in order to understand the role of phase changes on the transport and turbulence properties. Comprehensive numerical studies have been conducted within a Galerkin model and direct numerical simulations. We demonstrated that this simplified model has the potential to reproduce several aspects of atmospheric moist convection such as the appearance of localized convective patterns which are associated with cloud formation.
Publications
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(2010): Buoyancy statistics in moist turbulent Rayleigh-Bénard convection, J. Fluid Mech. 648, 509-519
Schumacher, J. and Pauluis, O.
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(2010): Cloud patterns and mixing properties in shallow moist Rayleigh-Bénard convection, New J. Phys. 12, 105002 (25 pages)
Weidauer, T., Pauluis, O. and Schumacher, J.
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(2010): Idealized moist Rayleigh-Bénard convection with piecewise linear equation of state, Comm. Math. Sci. 8, 295-319
Pauluis, O. and Schumacher, J.
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(2010): Shallow moist convection, Proceedings of the NIC Symposium 2010, Jülich, 24-25 February 2010, pp. 373-380
Weidauer, T., Junghans, C., Pauluis, O., Pütz, M. and Schumacher, J.