globalchange  > 影响、适应和脆弱性
DOI: 10.1002/2016MS000655
Scopus记录号: 2-s2.0-84991082222
论文题名:
Large-eddy simulation of subtropical cloud-topped boundary layers: 1. A forcing framework with closed surface energy balance
作者: Tan Z; , Schneider T; , Teixeira J; , Pressel K; G
刊名: Journal of Advances in Modeling Earth Systems
ISSN: 19422466
出版年: 2016
卷: 8, 期:4
起始页码: 1565
结束页码: 1585
语种: 英语
英文关键词: Atmospheric temperature ; Boundary layers ; Climate change ; Clouds ; Energy balance ; Global warming ; Interfacial energy ; Oceanography ; Submarine geophysics ; Surface properties ; Surface waters ; Tropics ; Boundary layer clouds ; Cloud radiative effects ; Cloud-topped boundary layer ; Marine boundary layers ; Ocean mixed layers ; Sea surface temperature (SST) ; Sensible and latent heat fluxes ; Stratocumulus to cumulus transition ; Large eddy simulation ; climate forcing ; cloud cover ; convective cloud ; energy balance ; global warming ; large eddy simulation ; mixed layer ; radiative forcing ; sea surface temperature ; stratocumulus ; surface energy
英文摘要: Large-eddy simulation (LES) of clouds has the potential to resolve a central question in climate dynamics, namely, how subtropical marine boundary layer (MBL) clouds respond to global warming. However, large-scale processes need to be prescribed or represented parameterically in the limited-area LES domains. It is important that the representation of large-scale processes satisfies constraints such as a closed energy balance in a manner that is realizable under climate change. For example, LES with fixed sea surface temperatures usually do not close the surface energy balance, potentially leading to spurious surface fluxes and cloud responses to climate change. Here a framework of forcing LES of subtropical MBL clouds is presented that enforces a closed surface energy balance by coupling atmospheric LES to an ocean mixed layer with a sea surface temperature (SST) that depends on radiative fluxes and sensible and latent heat fluxes at the surface. A variety of subtropical MBL cloud regimes (stratocumulus, cumulus, and stratocumulus over cumulus) are simulated successfully within this framework. However, unlike in conventional frameworks with fixed SST, feedbacks between cloud cover and SST arise, which can lead to sudden transitions between cloud regimes (e.g., stratocumulus to cumulus) as forcing parameters are varied. The simulations validate this framework for studies of MBL clouds and establish its usefulness for studies of how the clouds respond to climate change. � 2016. The Authors.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/75860
Appears in Collections:影响、适应和脆弱性
气候变化与战略

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作者单位: Department of Earth Sciences, ETH Z�rich, Z�rich, Switzerland; California Institute of Technology, Pasadena, CA, United States; Department of Geophysical Sciences, University of Chicago, Chicago, IL, United States; Jet Propulsion Laboratory, Pasadena, CA, United States

Recommended Citation:
Tan Z,, Schneider T,, Teixeira J,et al. Large-eddy simulation of subtropical cloud-topped boundary layers: 1. A forcing framework with closed surface energy balance[J]. Journal of Advances in Modeling Earth Systems,2016-01-01,8(4)
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