Schiro Kathleen A, Su Hui, Ahmed Fiaz, Dai Ni, Singer Clare E, Gentine Pierre, Elsaesser Gregory S, Jiang Jonathan H, Choi Yong-Sang, David Neelin J
Department of Environmental Science, University of Virginia, Charlottesville, VA, USA.
Joint Institute for Research in Earth Systems Science and Engineering, University of California, Los Angeles, Los Angeles, CA, USA.
Nat Commun. 2022 Nov 19;13(1):7119. doi: 10.1038/s41467-022-34787-4.
Among models participating in the Coupled Model Intercomparison Project phase 6 (CMIP6), here we show that the magnitude of the tropical low cloud feedback, which contributes considerably to uncertainty in estimates of climate sensitivity, is intimately linked to tropical deep convection and its effects on the tropical atmospheric overturning circulation. First, a reduction in tropical ascent area and an increased frequency of heavy precipitation result in high cloud reduction and upper-tropospheric drying, which increases longwave cooling and reduces subsidence weakening, favoring low cloud reduction (Radiation-Subsidence Pathway). Second, increased longwave cooling decreases tropospheric stability, which also reduces subsidence weakening and low cloudiness (Stability-Subsidence Pathway). In summary, greater high cloud reduction and upper-tropospheric drying (negative longwave feedback) lead to a more positive cloud feedback among CMIP6 models by contributing to a greater reduction in low cloudiness (positive shortwave feedback). Varying strengths of the two pathways contribute considerably to the intermodel spread in climate sensitivity.
在参与耦合模式比较计划第六阶段(CMIP6)的模式中,我们在此表明,热带低云反馈的强度与热带深对流及其对热带大气垂直环流的影响密切相关,而热带低云反馈在很大程度上导致了气候敏感性估计的不确定性。首先,热带上升区域的减少和强降水频率的增加导致高云减少和对流层上部干燥,这增加了长波冷却并减少了下沉减弱,有利于低云减少(辐射 - 下沉途径)。其次,长波冷却增加会降低对流层稳定性,这也会减少下沉减弱和低云量(稳定性 - 下沉途径)。总之,更大程度的高云减少和对流层上部干燥(负长波反馈)通过导致更大程度的低云量减少(正短波反馈),在CMIP6模式中导致更积极的云反馈。这两种途径的不同强度在很大程度上导致了模式间气候敏感性的差异。