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基于云粒子衰减截面和气体吸收的回波强度订正技术 被引量:1
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作者 黄兴友 杨敏 +3 位作者 陆琳 闫文辉 杨晓 刘燕斐 《中国科技论文》 CAS 北大核心 2019年第1期92-97,共6页
利用地基Ka波段(35GHz)云雷达在安徽寿县观测层状云数据,在基于云滴谱分布模型和忽略湍流对速度谱宽的影响下,利用雷达反射率因子和速度谱宽反演得到云滴谱参数,并计算出云体中值直径、粒子数浓度、液态水含量;利用离散偶极子近似(discr... 利用地基Ka波段(35GHz)云雷达在安徽寿县观测层状云数据,在基于云滴谱分布模型和忽略湍流对速度谱宽的影响下,利用雷达反射率因子和速度谱宽反演得到云滴谱参数,并计算出云体中值直径、粒子数浓度、液态水含量;利用离散偶极子近似(discrete dipole approximation,DDA)算法计算出云体中不同大小云粒子的衰减截面,得到云层衰减系数。对毫米波云雷达的探测数据进行衰减订正时,需要考虑大气吸收对电磁波所造成的衰减,大气衰减系数可以通过Liebe模式计算。结果表明:传播路径上的云层衰减系数主要受云层内的液态水含量影响,深厚且回波较强的水云对雷达电磁波的衰减较大;在Ka波段,气体衰减有限,但当水汽丰富时,不能忽视;经过衰减订正后的毫米波雷达数据质量有明显改善。 展开更多
关键词 大气遥感 ka波段测云雷达 微物理参数 衰减订正
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Microphysical characteristics of precipitating cumulus cloud based on airborne Ka-band cloud radar and droplet measurements 被引量:1
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作者 Lei Wei Mengyu Huang +6 位作者 Rong Zhang Yuhuan Lü Tuanjie Hou Hengchi Lei Delong Zhao Wei Zhou Yuan Fu 《Atmospheric and Oceanic Science Letters》 CSCD 2022年第2期65-70,共6页
Based on cloud-probe data and airborne Ka-band cloud radar data collected in Baoding on 5 August 2018,the microphysical structural characteristics of cumulus(Cu)cloud at the precipitation stage were investigated.The c... Based on cloud-probe data and airborne Ka-band cloud radar data collected in Baoding on 5 August 2018,the microphysical structural characteristics of cumulus(Cu)cloud at the precipitation stage were investigated.The cloud droplets in the Cu cloud were found to be significantly larger than those in stratiform(STF)cloud.In the Cu cloud,most cloud particles were between 7 and 10μm in diameter,while in the STF cloud the majority of cloud particles grew no larger than 2μm.The sensitivity of cloud properties to aerosols varied with height.The cloud droplet effective radius showed a negative relationship with the aerosol number concentration(Na)in the cloud planetary boundary layer(PBL)and upper layer above the PBL.However,the cloud droplet concentration(Nc)varied little with decreased Na in the high liquid water content region above 1500 m.High Na values of between 300 and 1853 cm-3 were found in the PBL,and the maximum Na was sampled near the surface in August in the Hebei region,which was lower than that in autumn and winter.High radar reflectivity corresponded to large FCDP(fast cloud droplet probe)particle concentrations and small aerosol particle concentrations,and vice versa for low radar reflectivity.Strong updrafts in the Cu cloud increased the peak radius and Nc,and broadened cloud droplet spectrum;lower air temperature was favorable for particle condensational growth and produced larger droplets. 展开更多
关键词 Airplane observation Microphysical processes ka-band cloud radar CUMULUS
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