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由于混合相云反馈相互抵消导致的中等气候敏感性。

Moderate climate sensitivity due to opposing mixed-phase cloud feedbacks.

作者信息

Tan Ivy, Zhou Chen, Lamy Aubert, Stauffer Catherine L

机构信息

McGill University, Montreal, QC Canada.

Nanjing University, School of Atmospheric Sciences, Nanjing, China.

出版信息

NPJ Clim Atmos Sci. 2025;8(1):86. doi: 10.1038/s41612-025-00948-7. Epub 2025 Mar 4.

Abstract

Earth's climate sensitivity quantifies the ultimate change in global mean surface air temperature in response to a doubling of atmospheric CO concentrations. Recent assessments estimate that Earth's climate sensitivity lies between 2.3 °C and 4.7 °C, with the representation of clouds in climate models accounting for a large portion of its uncertainty. Here, we adjust the climate sensitivity of individual contemporary climate models after using satellite observations to alleviate biases in their representation of mixed-phase clouds. A resulting moderate average climate sensitivity of 3.63 ± 0.98(1) °C arises due to opposing responses of clouds. While increasing the proportion of liquid within cold clouds prior to CO doubling increases climate sensitivity via transitions from solid to liquid hydrometeors, a strongly opposing increase in reflective cloud cover decreases climate sensitivity. This emphasizes the need to reconsider the role of mixed-phase cloud cover changes in climate sensitivity assessments.

摘要

地球的气候敏感性量化了全球平均地表气温对大气二氧化碳浓度翻倍的最终变化。最近的评估估计,地球的气候敏感性在2.3°C至4.7°C之间,气候模型中云的表示占其不确定性的很大一部分。在这里,我们在使用卫星观测来减轻混合相云表示中的偏差后,调整了各个当代气候模型的气候敏感性。由于云的相反响应,得出了3.63±0.98(1)°C的适度平均气候敏感性。虽然在二氧化碳翻倍之前增加冷云中液体的比例会通过从固态水凝物向液态水凝物的转变提高气候敏感性,但反射性云量的强烈相反增加会降低气候敏感性。这强调了在气候敏感性评估中重新考虑混合相云量变化作用的必要性。

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