The implications of maintaining Earth's hemispheric albedo symmetry for shortwave radiative feedbacks

Aiden R. Jönsson, F. Bender
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Abstract

Abstract. The Earth's albedo is observed to be symmetric between the hemispheres on the annual mean timescale, despite the clear-sky albedo being asymmetrically higher in the Northern Hemisphere due to more land area and aerosol sources; this is because the mean cloud distribution currently compensates for the clear-sky asymmetry almost exactly. We investigate the evolution of the hemispheric difference in albedo in the Coupled Model Intercomparison Project Phase 6 (CMIP6) coupled model simulations following an abrupt quadrupling of CO2 concentrations, to which all models respond with an initial decrease of albedo in the Northern Hemisphere (NH) due to loss of Arctic sea ice. Models disagree over whether the net effect of NH cloud responses is to reduce or amplify initial NH albedo reductions. After the initial response, the evolution of the hemispheric albedo difference diverges among models, with some models remaining stably at their new hemispheric albedo difference and others returning towards their pre-industrial difference primarily through a reduction in SH cloud cover. Whereas local increases in cloud cover contribute to negative shortwave cloud feedback, the cross-hemispheric communicating mechanism found to be primarily responsible for restoring hemispheric symmetry in the models studied implies positive shortwave cloud feedback.
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短波辐射反馈维持地球半球反照率对称的意义
摘要在年平均时间尺度上,观测到地球的反照率在半球之间是对称的,尽管北半球晴空反照率由于陆地面积和气溶胶源较多而不对称地较高;这是因为平均云层分布目前几乎完全补偿了晴空的不对称性。我们在耦合模式比较项目第6阶段(CMIP6)耦合模式模拟中研究了在CO2浓度突然翻了两倍之后半球反照率差异的演变,所有模式都响应于北极海冰损失导致的北半球反照率初始降低。对于NH云响应的净效应是减少还是放大初始NH反照率降低,模式存在分歧。在初始响应之后,不同模式的半球反照率差的演变存在差异,一些模式稳定地保持在新的半球反照率差,而另一些模式主要通过SH云量的减少而恢复到工业化前的差异。虽然局部云量的增加有助于负短波云反馈,但在所研究的模式中发现的主要负责恢复半球对称性的跨半球通信机制意味着正短波云反馈。
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