Department of Atmospheric Science, Colorado State University, Fort Collins, CO 80523;
Sorbonne Université, LMD/IPSL, CNRS, Univ Paris 06, 75252 Paris, France.
Proc Natl Acad Sci U S A. 2017 Aug 1;114(31):8181-8186. doi: 10.1073/pnas.1620493114. Epub 2017 Jul 17.
The troposphere is the region of the atmosphere characterized by low static stability, vigorous diabatic mixing, and widespread condensational heating in clouds. Previous research has argued that in the tropics, the upper bound on tropospheric mixing and clouds is constrained by the rapid decrease with height of the saturation water vapor pressure and hence radiative cooling by water vapor in clear-sky regions. Here the authors contend that the same basic physics play a key role in constraining the vertical structure of tropospheric mixing, tropopause temperature, and cloud-top temperature throughout the globe. It is argued that radiative cooling by water vapor plays an important role in governing the depth and amplitude of large-scale dynamics at extratropical latitudes.
对流层的特点是静力学不稳定性低、强烈的非绝热混合以及云区广泛的凝结加热。先前的研究认为,在热带地区,对流层混合和云的上限受到晴空区水蒸气饱和水汽压随高度迅速下降和水蒸气辐射冷却的限制。在这里,作者认为相同的基本物理原理在限制整个地球对流层混合、对流层顶温度和云顶温度的垂直结构方面起着关键作用。有人认为,水蒸气辐射冷却在控制中纬度地区的大尺度动力学的深度和幅度方面起着重要作用。