Basic Physics Predicts Stronger High Cloud Radiative Heating With Warming

IF 4.6 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
B. Gasparini, G. Mandorli, C. Stubenrauch, A. Voigt
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Abstract

Radiative heating of clouds, particularly those in the upper troposphere, alters temperature gradients in the atmosphere, affecting circulation and precipitation in today's and future climates. However, the response of cloud radiative heating to global warming remains largely unknown. We study changes to high cloud radiative heating in a warmer climate, identify physical mechanisms responsible for these changes, and develop a theory based on well-understood physics to predict them. Our approach involves a stepwise procedure that builds upon a simple hypothesis of an upward shift in cloud radiative heating at constant temperature and gradually incorporates additional physics. We find that cloud radiative heating intensifies as clouds move upward, suggesting that the role of high clouds in controlling atmospheric circulations increases in a warmer climate.

Abstract Image

基础物理学预测,随着气候变暖,高云辐射热会更强
云的辐射加热,特别是对流层上层的云的辐射加热,改变了大气中的温度梯度,影响了今天和未来气候中的环流和降水。然而,云辐射加热对全球变暖的响应在很大程度上仍然未知。我们研究了变暖气候下高空云辐射加热的变化,确定了导致这些变化的物理机制,并基于众所周知的物理学发展了一个理论来预测它们。我们的方法包括一个循序渐进的过程,它建立在一个简单的假设上,即恒定温度下云辐射加热向上移动,并逐渐纳入额外的物理。我们发现云的辐射加热随着云的上升而增强,这表明在气候变暖的情况下,高空云在控制大气环流方面的作用增加。
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来源期刊
Geophysical Research Letters
Geophysical Research Letters 地学-地球科学综合
CiteScore
9.00
自引率
9.60%
发文量
1588
审稿时长
2.2 months
期刊介绍: Geophysical Research Letters (GRL) publishes high-impact, innovative, and timely research on major scientific advances in all the major geoscience disciplines. Papers are communications-length articles and should have broad and immediate implications in their discipline or across the geosciences. GRLmaintains the fastest turn-around of all high-impact publications in the geosciences and works closely with authors to ensure broad visibility of top papers.
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