主办单位:中国气象局沈阳大气环境研究所
国际刊号:ISSN 1673-503X
国内刊号:CN 21-1531/P

气象与环境学报 ›› 2023, Vol. 39 ›› Issue (5): 28-33.doi: 10.3969/j.issn.1673-503X.2023.05.004

• 论文 • 上一篇    下一篇

辽宁地区东北风回流暴雪预报偏差成因初探

张爱忠1(),阎琦2,*(),高磊3,陆井龙2,腾方达2,吴丹4,史洪杰5   

  1. 1. 民航东北地区空中交通管理局空管中心气象中心,辽宁沈阳 110169
    2. 辽宁省气象台,辽宁沈阳 110166
    3. 大连市气象信息中心,辽宁大连 116001
    4. 朝阳市龙城区气象局,辽宁朝阳 122000
    5. 阜新市气象局,辽宁阜新 123000
  • 收稿日期:2022-03-01 出版日期:2023-10-28 发布日期:2023-11-28
  • 通讯作者: 阎琦 E-mail:aizhongzhang@outlook.com;yq.mete@163.com
  • 作者简介:张爱忠,男,1975年生,高级工程师,主要从事短临天气预报及灾害性天气形成机理研究,E-mail:aizhongzhang@outlook.com
  • 基金资助:
    民航东北地区空中交通管理局项目“强降雪预报综合订正技术研究”

Preliminary study on the causes of deviation of the northeast wind backflow snowstorm forecast in Liaoning region

Aizhong ZHANG1(),Qi YAN2,*(),Lei GAO3,Jinglong LU2,Fangda TENG2,Dan WU4,Hongjie SHI5   

  1. 1. Meteorological center, Air traffic Management Center, Northeast Regional Air Traffic Administration of CAAC, Shenyang 110169, China
    2. Liaoning Meteorological Observatory, Shenyang 110166, China
    3. Dalian Meteorological Information Center, Dalian 116001, China
    4. Meteorological Service in Longcheng District of Chaoyang, Chaoyang 122000, China
    5. Fuxin Meteorological Service, Fuxin 123000, China
  • Received:2022-03-01 Online:2023-10-28 Published:2023-11-28
  • Contact: Qi YAN E-mail:aizhongzhang@outlook.com;yq.mete@163.com

摘要:

应用常规观测资料及NCEP FNL再分析资料,对2016年初辽宁地区一次预报失败暴雪过程的形成原因进行分析。结果表明:强降雪区域伴有锋生活动,锋生是暴雪增强的直接原因。降雪期间出现持续锋生,总锋生函数随时间向高层发展,在强降雪阶段水平变形项对锋生的正贡献更大,特别是伸长变形对水平变形项的贡献显著,辽宁东部东北风穿过等θse线,黄海北部偏东风穿过等θse线,两股气流汇合形成θse等值线更加密集的一条狭带,该区域温湿对比明显产生锋生。锋生作用下,锋面次级环流利于上升运动的发展及维持,动力抬升和水汽辐合作用增强导致强降雪天气。预报中伸长变形增强产生的锋生作用容易被忽视,是降雪量预报偏差的主要原因,因此可以将相应区域的降雪量向大订正,减小预报误差。

关键词: 暴雪, 锋生, 水平变形项, 伸长变形, 预报偏差

Abstract:

Using the conventional observation data and NCEP FNL reanalysis data, the causes of a failed forecast snowstorm process were analyzed in the Liaoning region in early 2016.The results show that there are frontogenesis activities in the heavy snowfall area, and the frontogenesis is the direct cause of the intensification of snowstorms.Continuous frontogenesis occurs during snowfall, and the total frontogenesis function develops higher with time.The positive contribution of the horizontal deformation term to frontogenesis is greater during the heavy snowfall stage, especially when the contribution of elongation deformation to the horizontal deformation term is significant.The northeast wind in the eastern Liaoning provice and the easterly wind in the northern Yellow Sea both pass through the θse line, and the two air currents converge to form a narrow band with more dense θse contour lines.The clear contrast of temperature and humidity in this area produces frontogenesis.Under frontogenesis, the secondary circulation of the front is conducive to the development and maintenance of the upward movement, and the dynamic lifting and the enhancement of water vapor convergence lead to heavy snowfall weather.The frontogenesis caused by the enhancement of elongation deformation in the forecast is easy to ignore, which is the main cause of the snowfall forecast error.Therefore, the snowfall amount in the corresponding region can be revised to reduce the forecast error.

Key words: Snowstorm, Frontogenesis, Horizontal deformation term, Elongation and deformation, Forecast deviation

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