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Vertical distribution of the particle phase in tropical deep convective clouds as derived from cloud-side reflected solar radiation measurements coefficients using multiple experimental data sets

机译:利用多个实验数据集从云端反射太阳辐射测量系数得到的热带深层对流云中粒子相的垂直分布

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摘要

Vertical profiles of cloud particle phase in tropical deep convective clouds (DCCs) were investigated using airborne solar spectral radiation data collected by the German High Altitude and Long Range Research Aircraft (HALO) during the ACRIDICON-CHUVA campaign, which was conducted over the Brazilian rainforest in September 2014. A phase discrimination retrieval based on imaging spectroradiometer measurements of DCC side spectral reflectivity was applied to clouds formed in different aerosol conditions. From the retrieval results the height of the mixed-phase layer of the DCCs was determined. The retrieved profiles were compared with in situ measurements and satellite observations. It was found that the depth and vertical position of the mixed-phase layer can vary up to 900 m for one single cloud scene. This variability is attributed to the different stages of cloud development in a scene. Clouds of mature or decaying stage are affected by falling ice particles resulting in lower levels of fully glaciated cloud layers compared to growing clouds. Comparing polluted and moderate aerosol conditions revealed a shift of the lower boundary of the mixed-phase layer from 5.6 ± 0.2 km (269 K; moderate) to 6.2 ± 0.3 km (267 K; polluted), and of the upper boundary from 6.8 ± 0.2 km (263 K; moderate) to 7.4 ± 0.4 km (259 K; polluted), as would be expected from theory.
机译:使用ACRIDICON-CHUVA活动期间由德国高空和远程研究飞机(HALO)收集的机载太阳光谱辐射数据,对热带深对流云(DCC)中云粒子相的垂直剖面进行了调查,该活动是在巴西雨林上进行的2014年9月。将基于DCC侧光谱反射率的成像分光光度计测量的相位判别检索应用于在不同气溶胶条件下形成的云。根据检索结果,确定DCC混合相层的高度。将检索到的剖面与原位测量和卫星观测进行比较。已经发现,对于一个单一的云场景,混合相层的深度和垂直位置可以变化高达900μm。这种可变性归因于场景中云开发的不同阶段。成熟或腐烂阶段的云受到落下的冰粒的影响,与正在生长的云相比,导致完全冰川化的云层水平较低。比较受污染和中等程度的气溶胶条件,可知混合相层的下边界从5.6±0.2 km(269 K;中度)移至6.2±0.3 km(267 K;受污染),上边界从6.8±从理论上可以预期到0.2 km(263 K;中等)到7.4±0.4 km(259 K;污染)。

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