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Cloud Type and Top Height Estimation for Tropical Upper-Tropospheric Clouds Using GMS-5 Split-Window Measurements Combined with Cloud Radar Measurements

机译:GMS-5分割窗口测量与云雷达测量相结合的热带对流层上云的云类型和最高高度估计

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References(13) Cited-By(1) Supplementary materials(1) Cloud types of tropical upper-tropospheric stratiform clouds (UTSCs) were estimated using split-window brightness temperatures (TB) measured by a geostationary satellite. For non-precipitating high clouds, cloud-top heights were estimated. Observation-based estimation tables in terms of 10.8 µm TB (T11) and the difference between T11 and 12 µm TB (ΔT = T11 - T12) were presented using ship-borne cloud radar measurements conducted during three months in the tropical warm-pool region. After defining the cloud types and cloud-top height using radar measurements, their detectabilities were shown as the function of T11 and ΔT. The detectability of non-precipitating UTSCs is higher in regions with T11 between 220 and 275 K and higher ΔT. Surface precipitation is more detectable in regions with low T11 and small ΔT. The estimated cloud-top height of non-precipitating UTSCs tends to rise with decreasing T11 and increasing ΔT. The variation in the cloud-top estimates with ΔT reached a few kilometers at T11 of ∼250 K.
机译:参考文献(13)引用依据(1)补充材料(1)使用对地静止卫星测得的裂窗亮度温度(TB)估算了热带对流层上层云(UTSC)的云类型。对于非降水的高云,估计了云顶高度。使用在热带暖池地区三个月内进行的船载云雷达测量,得出了基于观测的估计表,表示为10.8 µm TB(T11)以及T11和12 µm TB之间的差异(ΔT= T11-T12)。 。在使用雷达测量定义云的类型和云顶高度之后,它们的可检测性显示为T11和ΔT的函数。在T11为220至275 K且ΔT较高的区域中,非沉淀UTSC的可检测性较高。在T11低和ΔT小的区域中更容易检测到表面降水。随着T11的减小和ΔT的增加,非降水UTSC的估计云顶高度趋于增加。在T11〜250 K时,ΔT的云顶估计值的变化达到了几公里。

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