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人为导致的北半球热带环流减弱。

Human-induced weakening of the Northern Hemisphere tropical circulation.

机构信息

Department of Earth and Planetary Sciences, Weizmann Institute of Science, Rehovot, Israel.

Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Nature. 2023 May;617(7961):529-532. doi: 10.1038/s41586-023-05903-1. Epub 2023 Apr 17.

Abstract

By accounting for most of the poleward atmospheric heat and moisture transport in the tropics, the Hadley circulation largely affects the latitudinal patterns of precipitation and temperature at low latitudes. To increase our preparednesses for human-induced climate change, it is thus critical to accurately assess the response of the Hadley circulation to anthropogenic emissions. However, at present, there is a large uncertainty in recent Northern Hemisphere Hadley circulation strength changes. Not only do climate models simulate a weakening of the circulation, whereas atmospheric reanalyses mostly show an intensification of the circulation, but atmospheric reanalyses were found to have artificial biases in the strength of the circulation, resulting in unknown impacts of human emissions on recent Hadley circulation changes. Here we constrain the recent changes in the Hadley circulation using sea-level pressure measurements and show that, in agreement with the latest suite of climate models, the circulation has considerably weakened over recent decades. We further show that the weakening of the circulation is attributable to anthropogenic emissions, which increases our confidence in human-induced tropical climate change projections. Given the large climate impacts of the circulation at low latitudes, the recent human-induced weakening of the flow suggests wider consequences for the regional tropical-subtropical climate.

摘要

Hadley 环流在很大程度上影响了低纬度地区的降水和温度的纬向分布模式,其占热带地区大气热量和水汽输送的大部分。为了提高我们对人类引起的气候变化的准备程度,因此准确评估 Hadley 环流对人为排放的响应至关重要。然而,目前,对最近北半球 Hadley 环流强度变化存在很大的不确定性。气候模型不仅模拟出环流的减弱,而大气再分析则大多显示出环流的加强,而且大气再分析还发现环流强度存在人为偏差,这导致人们对最近 Hadley 环流变化中人类排放的影响未知。在这里,我们使用海平面气压测量来约束 Hadley 环流的近期变化,并表明,与最新的气候模型系列一致,环流在最近几十年已经大大减弱。我们进一步表明,环流的减弱归因于人为排放,这增加了我们对人为引起的热带气候变化预测的信心。鉴于环流在低纬度地区的巨大气候影响,最近人为引起的环流减弱表明对区域热带-亚热带气候的影响更加广泛。

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