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  Single-column model simulations of subtropical marine boundary-layer cloud transitions under weakening inversions

Neggers, R., Ackerman, A., Angevine, W., Bazile, E., Beau, I., Blossey, P., et al. (2017). Single-column model simulations of subtropical marine boundary-layer cloud transitions under weakening inversions. Journal of Advances in Modeling Earth Systems, 9, 2385-2412. doi:10.1002/2017MS001064.

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Neggers_et_al-2017-Journal_of_Advances_in_Modeling_Earth_Systems.pdf (Publisher version), 7MB
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 Creators:
Neggers, R.A.J., Author
Ackerman, A.S., Author
Angevine, W.M., Author
Bazile, E., Author
Beau, I., Author
Blossey, P.N., Author
Boutle, I.A., Author
de Bruijn, C., Author
Cheng, A., Author
van der Dussen, J., Author
Fletcher, J., Author
Dal Gesso, S., Author
Jam, A., Author
Kawai, H., Author
Cheedela, Suvarchal-Kumar1, Author           
Larson, V.E., Author
Lefebvre, M.-P., Author
Lock, A.P., Author
Meyer, N.R., Author
de Roode, S.R., Author
de Rooy, W., AuthorSandu, I., AuthorXiao, H., AuthorXu, K.-M., Author more..
Affiliations:
1Observations and Process Studies, The Atmosphere in the Earth System, MPI for Meteorology, Max Planck Society, ou_913575              

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Free keywords: Boundary layers; Large eddy simulation; Parameterization; Turbulent flow, Intercomparisons; Marine boundary layer clouds; North-eastern Pacific; Single column model simulations; Single-column model; Subgrid parameterization; Vertical resolution; Weather and climate models, Climate models, boundary layer; climate modeling; cloud cover; inverse analysis; large eddy simulation; radiative transfer; simulation; underwater environment, Atlantic Ocean; Atlantic Ocean (Northeast); Pacific Ocean; Pacific Ocean (Northeast)
 Abstract: Results are presented of the GASS/EUCLIPSE single-column model intercomparison study on the subtropical marine low-level cloud transition. A central goal is to establish the performance of state-of-the-art boundary-layer schemes for weather and climate models for this cloud regime, using large-eddy simulations of the same scenes as a reference. A novelty is that the comparison covers four different cases instead of one, in order to broaden the covered parameter space. Three cases are situated in the North-Eastern Pacific, while one reflects conditions in the North-Eastern Atlantic. A set of variables is considered that reflects key aspects of the transition process, making use of simple metrics to establish the model performance. Using this method, some longstanding problems in low-level cloud representation are identified. Considerable spread exists among models concerning the cloud amount, its vertical structure, and the associated impact on radiative transfer. The sign and amplitude of these biases differ somewhat per case, depending on how far the transition has progressed. After cloud breakup the ensemble median exhibits the well-known “too few too bright” problem. The boundary-layer deepening rate and its state of decoupling are both underestimated, while the representation of the thin capping cloud layer appears complicated by a lack of vertical resolution. Encouragingly, some models are successful in representing the full set of variables, in particular, the vertical structure and diurnal cycle of the cloud layer in transition. An intriguing result is that the median of the model ensemble performs best, inspiring a new approach in subgrid parameterization. © 2017. The Authors.

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Language(s): eng - English
 Dates: 2017-10-302017-10-30
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1002/2017MS001064
BibTex Citekey: Neggers20172385
 Degree: -

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Project name : -
Grant ID : 244067
Funding program : Funding Programme 7 (FP7)
Funding organization : European Commission (EC)

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Title: Journal of Advances in Modeling Earth Systems
Source Genre: Journal
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Publ. Info: Blackwell Publishing Ltd
Pages: - Volume / Issue: 9 Sequence Number: - Start / End Page: 2385 - 2412 Identifier: ISSN: 19422466