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Comparison of Cloud Properties between Cloud Sat Retrievals and Airplane Measurements in Mixed-Phase Cloud Layers of Weak Convective and Stratus Clouds 被引量:1
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作者 QIU Yujun Thomas CHOULARTON +1 位作者 Jonathan CROSIER Zixia LIU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2015年第12期1628-1638,共11页
Cloud microphysical properties including liquid and ice particle number concentration (NC), liquid water content (LWC), ice water content (IWC) and effective radius (RE) were retrieved from CloudSat data for a... Cloud microphysical properties including liquid and ice particle number concentration (NC), liquid water content (LWC), ice water content (IWC) and effective radius (RE) were retrieved from CloudSat data for a weakly convective and a widespread stratus cloud. Within the mixed-phase cloud layers, liquid-phase fractions needed to be assumed in the data retrieval process, and one existing linear (Pl) and two exponential (P2 and P3) functions, which estimate the liquid-phase fraction as a function of subfreezing temperature (from -20℃ to 0℃), were tested. The retrieved NC, LWC, IWC and RE using Pl were on average larger than airplane measurements in the same cloud layer, Function P2 performed better than p1 or P3 in retrieving the NCs of cloud droplets in the convective cloud, while function Pl performed better in the stratus cloud. Function P3 performed better in LWC estimation in both convective and stratus clouds. The REs of cloud droplets calculated using the retrieved cloud droplet NC and LWC were closer to the values of in situ observations than those retrieved directly using the Pl function. The retrieved NCs of ice particles in both convective and stratus clouds, on the assumption of liquid-phase fraction during the retrieval of liquid droplet NCs, were closer to those of airplane observations than on the assumption of function P1. 展开更多
关键词 mixed-phase cloud liquid water content effective radius ice particle
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基于FY2G卫星的宁夏空中云水资源特征研究 被引量:2
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作者 常倬林 党张利 +1 位作者 孙艳桥 林彤 《气象研究与应用》 2022年第1期47-52,共6页
为了提高宁夏空中云水资源开发利用效率,利用2017-2019年FY2G卫星反演产品、自动站降水资料及微波辐射计反演产品,分析宁夏不同地区云微观特性的时空变化特征,研究液水含量的降水效率及云水资源开发潜力。结果表明:(1)剔除不合理数据后,... 为了提高宁夏空中云水资源开发利用效率,利用2017-2019年FY2G卫星反演产品、自动站降水资料及微波辐射计反演产品,分析宁夏不同地区云微观特性的时空变化特征,研究液水含量的降水效率及云水资源开发潜力。结果表明:(1)剔除不合理数据后,FY2G卫星反演结果与微波辐射计反演结果相关性较好,反演产品基本上能够代表宁夏云水资源特征;(2)宁夏云中过冷层厚度大约在1.65~2km,液态水含量在0.02~0.5mm,云光学厚度的均值在3~7,云粒子有效半径在3~8μm;(3)宁夏云液态水降水效率为53.9%,人工增雨的潜力为46.1%,云液态水降水效率在夏季、秋季、春季、冬季依次降低。 展开更多
关键词 FY2G 垂直累计液态水含量 云光学厚度 过冷层厚度 有效粒子半径
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