期刊文献+

The Cloud Processes of a Simulated Moderate Snowfall Event in North China 被引量:3

The Cloud Processes of a Simulated Moderate Snowfall Event in North China
在线阅读 下载PDF
导出
摘要 The understanding of the cloud processes of snowfall is essential to the artificial enhancement of snow and the numerical simulation of snowfall. The mesoscale model MM5 is used to simulate a moderate snowfall event in North China that occurred during 20-21 December 2002. Thirteen experiments are performed to test the sensitivity of the simulation to the cloud physics with different cumulus parameterization schemes and different options for the Goddard cloud microphysics parameterization schemes. It is shown that the cumulus parameterization scheme has little to do with the simulation result. The results also show that there are only four classes of water substances, namely the cloud water, cloud ice, snow, and vapor, in the simulation of the moderate snowfall event. The analysis of the cloud microphysics budgets in the explicit experiment shows that the condensation of supersaturated vapor, the depositional growth of cloud ice, the initiation of cloud ice, the accretion of cloud ice by snow, the accretion of cloud water by snow, the deposition growth of snow, and the Bergeron process of cloud ice are the dominant cloud microphysical processes in the simulation. The accretion of cloud water by snow and the deposition growth of the snow are equally important in the development of the snow. The understanding of the cloud processes of snowfall is essential to the artificial enhancement of snow and the numerical simulation of snowfall. The mesoscale model MM5 is used to simulate a moderate snowfall event in North China that occurred during 20-21 December 2002. Thirteen experiments are performed to test the sensitivity of the simulation to the cloud physics with different cumulus parameterization schemes and different options for the Goddard cloud microphysics parameterization schemes. It is shown that the cumulus parameterization scheme has little to do with the simulation result. The results also show that there are only four classes of water substances, namely the cloud water, cloud ice, snow, and vapor, in the simulation of the moderate snowfall event. The analysis of the cloud microphysics budgets in the explicit experiment shows that the condensation of supersaturated vapor, the depositional growth of cloud ice, the initiation of cloud ice, the accretion of cloud ice by snow, the accretion of cloud water by snow, the deposition growth of snow, and the Bergeron process of cloud ice are the dominant cloud microphysical processes in the simulation. The accretion of cloud water by snow and the deposition growth of the snow are equally important in the development of the snow.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2006年第2期235-242,共8页 大气科学进展(英文版)
基金 The authors benefited from discussions with Professors C.-H.Sui and Xu Huanbin.The comments of the three anonymous reviewers are acknowledged.This research was supported by the National Natural Science Foundation of China.(Grant Nos.40375036 and 40105006).
关键词 SNOWFALL cloud microphysics parameterization cumulus parameterization MM5 North China snowfall, cloud microphysics parameterization, cumulus parameterization, MM5, North China
  • 相关文献

参考文献2

二级参考文献18

  • 1张大林,Mon Wea Rev,1989年,117卷,960页
  • 2张大林,Tellus A,1989年,41卷,132页
  • 3张大林,J Atmos Sci,1988年,45卷,261页
  • 4张大林,Mon Wea Rev,1988年,116卷,2660页
  • 5张大林,Quart J R Meteorol Soc,1988年,114卷,31页
  • 6张大林,J Atmos Sci,1986年,43卷,1913页
  • 7张大林,Mon Wea Rev,1986年,114卷,1278页
  • 8张大林,Mon Wea Rev,1986年,114卷,2418页
  • 9Lin Y L,J Climate Appl Meteorol,1983年,22卷,1065页
  • 10Kuo Y H,Bull Am Meteor Soc,1997年,78卷,475页

共引文献85

同被引文献45

引证文献3

二级引证文献17

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部