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Impact of Antarctic mixed-phase clouds on climate

机译:南极混合相云对气候的影响

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摘要

Precious little is known about the composition of low-level clouds over the Antarctic Plateau and their effect on climate. In situ measurements at the South Pole using a unique tethered balloon system and ground-based lidar reveal a much higher than anticipated incidence of low-level, mixed-phase clouds (i.e., consisting of supercooled liquid water drops and ice crystals). The high incidence of mixed-phase clouds is currently poorly represented in global climate models (GCMs). As a result, the effects that mixed-phase clouds have on climate predictions are highly uncertain. We modify the National Center for Atmospheric Research (NCAR) Community Earth System Model (CESM) GCM to align with the new observations and evaluate the radiative effects on a continental scale. The net cloud radiative effects (CREs) over Antarctica are increased by +7.4 Wm−2, and although this is a significant change, a much larger effect occurs when the modified model physics are extended beyond the Antarctic continent. The simulations show significant net CRE over the Southern Ocean storm tracks, where recent measurements also indicate substantial regions of supercooled liquid. These sensitivity tests confirm that Southern Ocean CREs are strongly sensitive to mixed-phase clouds colder than −20 °C.
机译:关于南极高原低层云的组成及其对气候的影响知之甚少。使用独特的系留气球系统和地面激光雷达在南极进行的原位测量显示,低层混合相云(即由过冷的液态水滴和冰晶组成)的发生率大大高于预期。目前,在全球气候模型(GCM)中,混合相云的高发率很难得到体现。结果,混合相云对气候预测的影响是高度不确定的。我们修改了国家大气研究中心(NCAR)社区地球系统模型(CESM)GCM,使其与新的观测结果保持一致,并评估了大陆范围的辐射效应。南极上空的净云辐射效应(CRE)增加了+7.4 Wm −2 ,尽管这是一个重大变化,但当修改后的模型物理扩展到南极大陆以外时,会产生更大的影响。模拟显示了南大洋风暴轨迹上的显着净CRE,最近的测量还显示了过冷液体的实质区域。这些敏感性测试证实,南部海洋的CRE对温度低于-20°C的混合相云非常敏感。

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