Comparison of aerosol effects on simulated spring and summer hailstorm clouds

被引:0
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作者
Huiling Yang
Hui Xiao
Chunwei Guo
Guang Wen
Qi Tang
Yue Sun
机构
[1] Chinese Academy of Sciences,Key Laboratory of Cloud Precipitation Physics and Severe Storms, and Center of Disaster Reduction, Institute of Atmospheric Physics
[2] Environmental Meteorology Forecast Center of Beijing–Tianjin–Hebei,undefined
[3] University of Chinese Academy of Sciences,undefined
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关键词
cloud condensation nuclei (CCN); microphysical process; hailstorm; precipitation; 云凝结核(CCN); 微物理过程; 强风暴; 降水;
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学科分类号
摘要
Numerical simulations are carried out to investigate the effect of cloud condensation nuclei (CCN) concentrations on microphysical processes and precipitation characteristics of hailstorms. Two hailstorm cases are simulated, a spring case and a summer case, in a semiarid region of northern China, with the Regional Atmospheric Modeling System. The results are used to investigate the differences and similarities of the CCN effects between spring and summer hailstorms. The similarities are: (1) The total hydrometeor mixing ratio decreases, while the total ice-phase mixing ratio enhances, with increasing CCN concentration; (2) Enhancement of the CCN concentration results in the production of a greater amount of small-sized hydrometeor particles, but a lessening of large-sized hydrometeor particles; (3) As the CCN concentration increases, the supercooled cloud water and rainwater make a lesser contribution to hail, while the ice-phase hydrometeors take on active roles in the growth of hail; (4) When the CCN concentration increases, the amount of total precipitation lessens, while the role played by liquid-phase rainfall in the amount of total precipitation reduces, relatively, compared to that of ice-phase precipitation. The differences between the two storms include: (1) An increase in the CCN concentration tends to reduce pristine ice mixing ratios in the spring case but enhance them in the summer case; (2) Ice-phase hydrometeor particles contribute more to hail growth in the spring case, while liquid water contributes more in the summer case; (3) An increase in the CCN concentration has different effects on surface hail precipitation in different seasons.
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页码:877 / 893
页数:16
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