Convective precipitation simulated with ICON over heterogeneous surfaces in dependence on model and land-surface resolution

The impact of land-surface properties like vegetation, soil type, soil moisture, and the orography on the atmosphere is manifold. These features determine the evolution of the atmospheric boundary layer, convective conditions, cloud evolution and precipitation. The impact of model grid spacing and l...

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Superior document:Wissenschaftliche Berichte des Instituts für Meteorologie und Klimaforschung des Karlsruher Instituts für Technologie
:
Year of Publication:2021
Language:English
Series:Wissenschaftliche Berichte des Instituts für Meteorologie und Klimaforschung des Karlsruher Instituts für Technologie
Physical Description:1 electronic resource (200 p.)
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520 |a The impact of land-surface properties like vegetation, soil type, soil moisture, and the orography on the atmosphere is manifold. These features determine the evolution of the atmospheric boundary layer, convective conditions, cloud evolution and precipitation. The impact of model grid spacing and land-surface resolution on convective precipitation over heterogeneous surfaces is investigated using ICOsahedral Nonhydrostatic (ICON) simulations within the framework of the HD(CP)2 project. 
546 |a English 
650 7 |a Physics  |2 bicssc 
653 |a ICON 
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653 |a Wärme- und Feuchtehaushalt 
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653 |a Entrainment 
653 |a Wolkenaggregation 
653 |a LAGRANTO 
653 |a Auslösemechanismen der Konvektion 
653 |a heat and moisture budgets 
653 |a evaporative cooling 
653 |a entrainment 
653 |a cloud aggregation 
653 |a triggering mechanisms of convection 
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