Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
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Insights into low-latitude cloud feedbacks from high-resolution modelsMarine cloud brighteningNumerics and subgrid-scale modeling in large eddy simulations of stratocumulus clouds.Network approach to patterns in stratocumulus clouds.The impact of cloud vertical profile on liquid water path retrieval based on the bispectral method: A theoretical study based on large-eddy simulations of shallow marine boundary layer clouds.Cloud radar Doppler spectra in drizzling stratiform clouds: 1. Forward modeling and remote sensing applicationsThe inclusion of water with the injected aerosol reduces the simulated effectiveness of marine cloud brighteningIntercomparison of large-eddy simulations of Arctic mixed-phase clouds: Importance of ice size distribution assumptionsThe GASS/EUCLIPSE model intercomparison of the stratocumulus transition as observed during ASTEX: LES resultsEffects of cloud horizontal inhomogeneity and drizzle on remote sensing of cloud droplet effective radius: Case studies based on large-eddy simulationsControls on precipitation and cloudiness in simulations of trade-wind cumulus as observed during RICOToward ice formation closure in Arctic mixed-phase boundary layer clouds during ISDACRACORO continental boundary layer cloud investigations: 2. Large-eddy simulations of cumulus clouds and evaluation with in situ and ground-based observationsEffects of environment forcing on marine boundary layer cloud-drizzle processesStratocumulus to Cumulus Transition by DrizzleFramework for improvement by vertical enhancement: A simple approach to improve representation of low and high-level clouds in large-scale modelsTechnical note: Large-eddy simulation of cloudy boundary layer with the Advanced Research WRF modelLarge-eddy simulation of subtropical cloud-topped boundary layers: 2. Cloud response to climate changeLarge-eddy simulation of subtropical cloud-topped boundary layers: 1. A forcing framework with closed surface energy balanceMarine low cloud sensitivity to an idealized climate change: The CGILS LES intercomparisonEffects of resolution on the simulation of boundary-layer clouds and the partition of kinetic energy to subgrid scalesModifications to WRF's dynamical core to improve the treatment of moisture for large-eddy simulations
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P2860
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
description
im März 2009 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в березні 2009
@uk
name
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@en
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@nl
type
label
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@en
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@nl
prefLabel
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@en
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@nl
P2093
P50
P356
P1476
Large-Eddy Simulations of a Drizzling, Stratocumulus-Topped Marine Boundary Layer
@en
P2093
Adrian Lock
Andreas Chlond
Andrew S. Ackerman
Bjorn Stevens
Chin-Hoh Moeng
David C. Lewellen
Hongli Jiang
Kozo Nakamura
Marat Khairoutdinov
Margreet C. vanZanten
P304
P356
10.1175/2008MWR2582.1
P407
P577
2009-03-01T00:00:00Z