globalchange  > 影响、适应和脆弱性
DOI: 10.1002/2015MS000467
Scopus记录号: 2-s2.0-84944882783
论文题名:
Balanced dynamics and convection in the tropical troposphere
作者: Raymond D; , Fuchs Ž; , Gjorgjievska S; , Sessions S
刊名: Journal of Advances in Modeling Earth Systems
ISSN: 19422466
出版年: 2015
卷: 7, 期:3
起始页码: 1093
结束页码: 1116
语种: 英语
英文关键词: Dynamics ; Thermodynamics ; Tropical engineering ; Troposphere ; Baroclinic instability ; Convective instabilities ; Quasi-equilibrium process ; Thermodynamic constraints ; Thermodynamic process ; Tropical convection ; Tropical dynamics ; Tropical troposphere ; Tropics ; baroclinic mode ; buoyancy forcing ; conceptual framework ; convection ; heating ; radiative transfer ; thermodynamics ; tropical environment ; troposphere ; vorticity
英文摘要: This paper presents a conceptual picture of balanced tropical tropospheric dynamics inspired by recent observations. The most important factor differentiating the tropics from middle and higher latitudes is the absence of baroclinic instability; upward motion occurs primarily via deep convective processes. Thus, convection forms an integral part of large-scale tropical motions. Since convection itself is small-scale and chaotic in detail, predictability lies in uncovering the hidden hands that guide the average behavior of convection. Two appear, balanced dynamics and thermodynamic constraints. Contrary to conventional expectations, balanced dynamics plays a crucial role in the tropical atmosphere. However, due to the smallness of the Coriolis parameter there, nonlinear balance is more important in the tropics than at higher latitudes. Three thermodynamic constraints appear to play an important role in governing the average behavior of convection outside of the cores of tropical storms. First, convection is subject to control via a lower tropospheric buoyancy quasi-equilibrium process, wherein destabilization of the lower troposphere by nonconvective processes is balanced by convective stabilization. Second, the production of precipitation is extraordinarily sensitive to the saturation fraction of the troposphere. Third, "moisture quasi-equilibrium" governs the saturation fraction, with moister atmospheres being associated with smaller moist convective instability. The moist convective instability is governed by the balanced thermodynamic response to the pattern of potential vorticity, which in turn is slowly modified by convective and radiative heating. The intricate dance between these dynamic and thermodynamic processes leads to complex behavior of the tropical atmosphere in ways that we are just beginning to understand. © 2015. The Authors.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/75996
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: Physics Department, Geophysical Research Center, New Mexico Tech, Socorro, New Mexico, United States

Recommended Citation:
Raymond D,, Fuchs Ž,, Gjorgjievska S,et al. Balanced dynamics and convection in the tropical troposphere[J]. Journal of Advances in Modeling Earth Systems,2015-01-01,7(3)
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