首页> 外文会议>International congress on mathematical biology >Numerical Simulation of Microphysical Process of a Cold Front Precipitation Cloud System in Autumn in Shijiazhuang Region
【24h】

Numerical Simulation of Microphysical Process of a Cold Front Precipitation Cloud System in Autumn in Shijiazhuang Region

机译:石家庄地区秋季冷前沉淀云系统微神科过程的数值模拟

获取原文

摘要

The mesoscale model WRF has been used to simulate the evolution of a cold front precipitaion cloud system on 4-5 October 2008 in Shijiazhuang region, China. Data from satellite, radar and routine observation were also utilized for comprehensive analysis. Results show that: both the middle-layer and upper-layer of the cloud system were cold-cloud structure while the lower-layer was warm-cloud structure, therefore, this configuration was beneficial to the occurrence of seeding-feeding precipitation mechanism. Hydrometeors in the cloud system were heterogeneous in space distribution, but vertical distributions of ice crystal, snow, graupel, cloud water and rain water had good agreements with the distribution of cloud system. The main microphysical mechanism of precipitation was that ice crystals became larger by accretion of supercooled water in fallen process and continued growing through the warm-layer. Both mechanisms of precipitation of cold-cloud and warm-cloud were verified to exist in the cloud system, and the start of precipitation depend largely on the former one. The fluctuation action in the relatively homogenous upflow field existed in the lower-layer of cloud system and formed owing to mesoscale convergence was the main cloud dynamic mechanism that convective clouds were embed in stratiform cloud and precipitation got enhanced.
机译:Mescle模型WRF已被用于模拟2008年10月4日至5日在中国石家庄地区的冷前灌注云系统的演变。来自卫星,雷达和常规观察的数据也用于综合分析。结果表明:云系统的中层和上层都是冷云结构,而下层是暖云结构,因此,这种配置有利于播种饲养沉淀机制的发生。云系统中的水流量在空间分布中是异构的,但冰晶,雪,格兰普尔,云水和雨水的垂直分布与云系统的分布有良好的协议。沉淀的主要微神科机制是冰晶通过倒下的过程中的过冷水而变大,并继续通过暖层生长。验证了冷云和暖云的沉淀机制,以存在于云系统中,并且降水的开始主要取决于前者。相对均匀的上流场中存在的波动动作存在于云系统的下层,并且由于Messcale收敛而形成是对流云嵌入层状云和降水中的主要云动态机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号