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Elucidating ice formation pathways in the aerosol–climate model ECHAM6-HAM2

机译:在气溶胶气候模型ECHAM6-HAM2阐明冰形成途径

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Cloud microphysics schemes in global climate models have long suffered from a lack of reliable satellite observations of cloud ice. At the same time there is a broad consensus that the correct simulation of cloud phase is imperative for a reliable assessment of Earth's climate sensitivity. At the core of this problem is understanding the causes for the inter-model spread of the predicted cloud phase partitioning. This work introduces a new method to build a sound cause-and-effect relation between the microphysical parameterizations employed in our model and the resulting cloud field by analysing ice formation pathways. We find that freezing processes in supercooled liquid clouds only dominate ice formation in roughly 6% of the simulated clouds, a small fraction compared to roughly 63% of the clouds governed by freezing in the cirrus temperature regime below ?35°C. This pathway analysis further reveals that even in the mixed-phase temperature regime between ?35 and 0°C, the dominant source of ice is the sedimentation of ice crystals that originated in the cirrus regime. The simulated fraction of ice cloud to total cloud amount in our model is lower than that reported by the CALIPSO-GOCCP satellite product. This is most likely caused by structural differences of the cloud and aerosol fields in our model rather than the microphysical parametrizations employed.
机译:全球气候模型中的云微型药物方案长期以来缺乏可靠的云冰卫星观察。与此同时,存在广泛的共识,即对地球气候敏感性的可靠评估,对云阶段的正确模拟是必不可少的。在这个问题的核心,是理解预测云相位分区的模型间扩展的原因。这项工作介绍了一种新方法,可以通过分析冰层途径来构建我们的模型和所产生的云领域所采用的微专业参数化与所产生的云领域之间的声音原因和效应关系。我们发现过冷液体云中的冻结过程仅在大约6%的模拟云中占据了冰形成的冰形成,而小分数相比,大约63%的云在卷曲温度制度下冻结了35°C。该途径分析进一步揭示了即使在Δ35和0°C之间的混合相温度方案中,显性冰源也是源自卷心制度的冰晶沉降。我们模型中的冰云的模拟分数低于Calipso-Goccp卫星产品报告的云量。这很可能是由于我们模型中云和气溶胶领域的结构差异而不是所用的微微物理参数化引起的。

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