globalchange  > 影响、适应和脆弱性
DOI: 10.1002/2016MS000666
Scopus记录号: 2-s2.0-84990222896
论文题名:
Coupled radiative convective equilibrium simulations with explicit and parameterized convection
作者: Hohenegger C; , Stevens B
刊名: Journal of Advances in Modeling Earth Systems
ISSN: 19422466
出版年: 2016
卷: 8, 期:3
起始页码: 1468
结束页码: 1482
语种: 英语
英文关键词: Atmospheric temperature ; Climate models ; Greenhouses ; Interfacial energy ; Oceanography ; Parameterization ; Societies and institutions ; Surface waters ; Climate ; Cloud radiative effects ; Convective parameterization ; General circulation model ; Radiative-convective equilibrium ; Sea surface temperature (SST) ; Transient behavior ; Tropical climates ; Agglomeration ; atmosphere-ocean coupling ; atmospheric circulation ; atmospheric convection ; cloud radiative forcing ; equilibrium ; general circulation model ; sea surface temperature ; surface energy ; temperature gradient ; tropical region
英文摘要: Radiative convective equilibrium has been applied in past studies to various models given its simplicity and analogy to the tropical climate. At convection-permitting resolution, the focus has been on the organization of convection that appears when using fixed sea surface temperature (SST). Here the SST is allowed to freely respond to the surface energy. The goals are to examine and understand the resulting transient behavior, equilibrium state, and perturbations thereof, as well as to compare these results to a simulation integrated with parameterized cloud and convection. Analysis shows that the coupling between the SST and the net surface energy acts to delay the onset of self-aggregation and may prevent it, in our case, for a slab ocean of less than 1 m. This is so because SST gradients tend to oppose the shallow low-level circulation that is associated with the self-aggregation of convection. Furthermore, the occurrence of self-aggregation is found to be necessary for reaching an equilibrium state and avoiding a greenhouse-like climate. In analogy to the present climate, the self-aggregation generates the dry and clear subtropics that allow the system to efficiently cool. In contrast, strong shortwave cloud radiative effects, much stronger than at convection-permitting resolution, prevent the simulation with parameterized cloud and convection to fall into a greenhouse state. The convection-permitting simulations also suggest that cloud feedbacks, as arising when perturbing the equilibrium state, may be very different, and in our case less negative, than what emerges from general circulation models. � 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/75882
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: Max Planck Institute for Meteorology, Hamburg, Germany

Recommended Citation:
Hohenegger C,, Stevens B. Coupled radiative convective equilibrium simulations with explicit and parameterized convection[J]. Journal of Advances in Modeling Earth Systems,2016-01-01,8(3)
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