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国家自然科学基金(41005073)

作品数:3 被引量:10H指数:2
相关作者:王秀娟夏葳姜忠宝张超杨洁帆更多>>
相关机构:吉林省气候中心大连市气象局中国科学院大气物理研究所更多>>
发文基金:国家自然科学基金更多>>
相关领域:天文地球环境科学与工程农业科学更多>>

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Numerical Simulation of Effects of Cloud Top Temperatures and Generating Cells on Secondary Ice Production in Stratiform Clouds with a Detailed Microphysical Model被引量:1
2012年
This paper outlines a one-dimensional,heightdependent bin model with detailed microphysical processes in which ice splinters are produced by a riming process.The model is then applied to simulate the shift of particle size distribution effected by the secondary ice production process within clouds with different generating cells and cloud top temperatures.The result of model simulations reveals the general effects of cloud updrafts on increasing ice particle concentration by extending the residence time of ice particles in clouds and providing sufficiently large supercooled water droplets.The rimesplintering mechanism is more effective in clouds with lower ice seeding rates than those with higher rates.Evolutions of hydrometeor size distribution triggered by the rime-splintering mechanism indicate that the interaction between large ice particles and supercooled water drops adds a "second maximum" to the primary ice spectra.
Yang Jie-FanLei Heng-Chi
关键词:MULTIPLICATION
河北一次层状云系降水的微物理机制数值模拟与分析被引量:5
2014年
利用一维层状云模式,详细分析了2009年5月1日中国中东部地区一次层状云系的微物理结构和降水过程。结果表明:此次降水为层状云系降水,云系垂直结构符合顾震潮3层概念模型和"播种云—供给云"机制,其中第一层(上层:4.7—7.0 km)存在冰雪晶,雪主要通过冰晶自动转化和凝华增长;第二层(中层:2.6—4.6 km)有冰晶、雪、霰、云水和雨滴,此层贝吉龙过程作用明显;第三层(下层:1.3—2.5 km)主要粒子为云滴、雨滴及从上层融化的雪和霰,霰的融化对雨滴的形成贡献最大。云体发展成熟时,各层之间存在一定的播种—供应关系,如第一层向第二层顶部播撒雪和冰晶,第二层向第三层顶部播撒霰和雪。
王秀娟姜忠宝杨洁帆夏葳张超
关键词:层状云微物理
Aircraft Measurements of Cloud–Aerosol Interaction over East Inner Mongolia被引量:4
2017年
To investigate the potential effects of aerosols on the microphysical properties of warm clouds, airborne observational data collected from 2009 to 2011 in Tongliao, Inner Mongolia, China, were statistically analyzed in this study. The results demonstrated that the vertical distribution of the aerosol number concentration(N_a) was similar to that of the clean rural continent. The average aerosol effective diameter(D_e) was maintained at approximately 0.4 μm at all levels. The data obtained during cloud penetrations showed that there was a progressive increase in the cloud droplet concentration(N_c) and liquid water content(LWC) from outside to inside the clouds, while the Nawas negatively related to the Ncand LWC at the same height. The fluctuation of the N_a, Ncand LWC during cloud penetration was more obvious under polluted conditions(Type 1) than under clean conditions(Type 2). Moreover, the wet scavenging of cloud droplets had a significant impact on the accumulation mode of aerosols, especially on particles with diameters less than 0.4 μm. The minimum wet scavenging coefficient within the cloud was close to 0.02 under Type 1 conditions, while it increased to 0.1 under Type 2 conditions,which proved that the cloud wet scavenging effect under Type 1 conditions was stronger than that under Type 2 conditions.Additionally, cloud droplet spectra under Type 1 conditions were narrower, and their horizontal distributions were more homogeneous than those under Type 2 conditions.
Yuhuan LüHengchi LEIJiefan YANG
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