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Effect of improving representation of horizontal and vertical cloud structure on the Earth's global radiation budget. Part II: The global effects

机译:改善水平和垂直云结构的表示形式对地球全球辐射预算的影响。第二部分:全球影响

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摘要

Reliably representing both horizontal cloud inhomogeneity and vertical cloud overlap is fundamentally important for the radiation budget of a general circulation model. Here, we build on the work of Part One of this two-part paper by applying a pair of parameterisations that account for horizontal inhomogeneity and vertical overlap to global re-analysis data. These are applied both together and separately in an attempt to quantify the effects of poor representation of the two components on radiation budget. Horizontal inhomogeneity is accounted for using the “Tripleclouds” scheme, which uses two regions of cloud in each layer of a gridbox as opposed to one; vertical overlap is accounted for using “exponential-random” overlap, which aligns vertically continuous cloud according to a decorrelation height. These are applied to a sample of scenes from a year of ERA-40 data. The largest radiativeudeffect of horizontal inhomogeneity is found to be in areas of marine stratocumulus; the effect of vertical overlap is found to be fairly uniform, but with larger individual short-wave and long-wave effects in areas of deep, tropical convection. The combined effect of the two parameterisations is found to reduce the magnitude of the net top-of-atmosphere cloud radiative forcing (CRF) byud2.25 W m−2, with shifts of up to 10 W m−2 in areas of marine stratocumulus. The effects of the uncertainty in our parameterisations on radiation budget is also investigated. It is found that the uncertainty in the impact of horizontal inhomogeneity is of order ±60%, while the uncertainty in the impact of vertical overlap is much smaller. This suggests an insensitivity of the radiation budget to the exact nature of the global decorrelation height distribution derived in Part One.
机译:可靠地表示水平云的不均匀性和垂直云的重叠对于基本环流模型的辐射预算至关重要。在这里,我们基于两部分的第一部分的工作,对全局重新分析数据应用了一对解释水平不均匀性和垂直重叠的参数化。将它们一起或分别应用,以试图量化这两个成分的代表性不足对辐射预算的影响。水平不均匀性是使用“ Tripleclouds”方案解决的,该方案在网格箱的每一层使用两个云区域,而不是一个。垂直重叠是通过使用“指数随机”重叠来解决的,该重叠根据解相关高度将垂直连续的云对齐。这些被应用于来自ERA-40一年数据的场景样本。发现水平不均匀性的最大辐射偏差在海洋叠层积云区域中。垂直重叠的影响被认为是相当均匀的,但是在热带深对流地区,短波和长波的影响更大。发现这两个参数化的组合效果使净大气层云顶辐射强迫(CRF)的幅度降低了 ud2.25 W m-2,在以下地区的漂移高达10 W m-2。海洋层积云。还研究了参数化中的不确定性对辐射预算的影响。发现水平不均匀性影响的不确定性约为±60%,而垂直重叠影响的不确定性要小得多。这表明辐射预算对第一部分中得出的全球去相关高度分布的确切性质不敏感。

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