WANG Lu-si,GU Hong-guo,ZHANG Xiao-han.The Analysis of a Persistent Torrential Rainhappened in Longmen Mountain in July 2014[J].Journal of Chengdu University of Information Technology,2016,(03):327-331.
2014年7月龙门山脉一次持续性暴雨过程分析
- Title:
- The Analysis of a Persistent Torrential Rainhappened in Longmen Mountain in July 2014
- 文章编号:
- 2096-1618(2016)03-0311-06
- 分类号:
- P458.1+21.1
- 文献标志码:
- A
- 摘要:
- 为探讨龙门山脉的持续性暴雨过程成因及非地转湿Q矢量的应用,利用2014年7月18~21日大气环流背景及天气影响系统和NCEP 1°×1°每6 h一次的再分析资料分析,结果表明:500 hPa西太平洋副热带高压外围环流稳定,阻挡西风槽东移使得其持续维持在川西高原,是这次持续性暴雨过程的大气环流背景和影响天气系统。中低层强盛的水汽输送与超级台风“威马逊”外围水汽的汇聚作用为这次持续性暴雨过程提供了充沛的水汽条件。暴雨发生前低层非地转湿Q矢量是一个快速增加的过程。暴雨发生时700 hPa非地转湿Q矢量辐合区与强降雨区有较好的对应关系,强降雨中心位于辐合中心东侧到零线梯度的较大处,越接近强降水时间,诊断效果越好; 辐合中心与其东侧或南侧的辐散中心构成次级环流圈。同时东北—西南向的龙门山带的陡峭地形引起盆地东南气流的强烈垂直上升运动,对暴雨的增幅有重要作用。
- Abstract:
- In order to analyze the cause and the use of the convergence of the wet Q-vector of the continuous torrential rain process in the Longmen mountain, the material of atmospheric circulation background, weather impact system and the NCEP reanalysis data(1°×1°)from NCEP/NCAR center on July 18-21, 2014. The results indicate that the stabilization of the environmental field of peripheral of the western pacific subtropical high, mak the upper trough maintain in the Chuanxi plateau the rainstorm's atmospheric circulation background and affect the weather system. The strong water vapor transport in the lower troposphere combined with vapor transportation of the super typhoon “RAMMASUN” provided abundant water vapor for the continuous torrential rain process. Before the heavy rain, the convergence of the wet Q-vector increase rapidly in the lower troposphere. In the heavy rain, the horizontal distribution of the convergence of the wet Q-vector at the level 700 hPa correspond well with the heavy rainfall center of the same period of time, and the position of maximum rainfall is near the east of the convergence center. The closer it gets to the heavy rain time, the better the diagnosis results.The convergence and divergence center constitute the secondary circulation. The steep northeast to southwest terrain of the Longmen Mountain play a important role in increasing the rainfall that cause the southeast airflow upward motion strongly.
参考文献/References:
[1] 郁淑华.诱发泥石流灾害的四川盆地大暴雨过程分析[J].气象,2002,28(8):251-288.
[2] 顾清源,肖递祥,黄楚惠,等.低空急流在副高西北侧连续性暴雨中的触发作用[J].气象,2009,35(4):59-67.
[3] 陈忠明,杨康权,伍红雨.湿斜压热动力耦合强迫激发辐合增长和暴雨维持的一种机制[J].物理学报,2009,58(6):4362-4371.
[4] 闵文彬,陈忠明,高文良,等.“2001.9.18”华西突发性强暴雨的中尺度分析[J].高原气象(增刊),2003,22:110-118.
[5] 李跃清.长江上游暴雨的边界层动力研究诊断[J].大气科学,1996,20(1):73-78.
[6] 李跃清,彭虎,张波.成都边界层风场演变天气意义的检验[J].高原气象,1997,16(3):331-336.
[7] 李跃清.1998年青藏高原东侧边界层风场与长江暴雨洪水的关系[J].大气科学,2000,24(5):641-648.
[8] 徐双柱,邹立维.一次梅雨期暴雨的中尺度数值模拟分析[J].暴雨灾害,2008,27(1):17-23.
[9] 丁一汇,胡国全.1998年中国大洪水时期的水汽收支研究[J].气象学报,2003,61(2):129-145.
[10] 谢义炳,戴武杰.中国东部地区夏季水汽输送个例计算[J].气象学报,1959,30(2):173-185.
[11] 黄治勇,王钰,王兴涛,等.鄂东南一次大暴雨过程成因分析与潜势预报[J].暴雨灾害,2007,26(2):125-129.
[12] 肖递祥,杨康权,祁生秀.2011年7月四川盆地两次突发性暴雨过程的对比分析[J].气象,2012,38(2):1483-1490.
[13] 朱乾根,林锦瑞,寿绍文,等. 天气学原理和方法[M].北京:气象出版社,2000:619.
[14] Hoskins,B J,Draghici, H C Davies. A new look at the ω-equation[J]. Quart. J. Roy. Meteor. Soc.,1978,104:31-38.
[15] 张兴旺.湿Q矢量表达式及其应用[J].气象,1998,24(8):3-7.
[16] 刘运成.川北“05.7.18”大暴雨的湿Q矢量诊断分析[D].兰州:兰州大学,2006.
[17] 鲁亚斌,普贵明,赵宁坤,等.“2006.10”云南严重秋季连阴雨水汽输送特征和湿Q矢量分析[J].气象科学,2009,29(1):64-70.
[18] 岳彩军,寿绍文.几种Q矢量的比较[J].南京气象学院学报,2002,25(4):525-532.
[19] 马力,冯汉中,杨进,等.四川省天气预报手册[M].成都:西南交通大学出版社,2014:99.
相似文献/References:
[1]廖洪涛,肖天贵,魏 微,等.东亚梅雨季低频波波包传播特征[J].成都信息工程大学学报,2019,(02):143.[doi:10.16836/j.cnki.jcuit.2019.02.008]
LIAO Hongtao,XIAO Tiangui,WEI Wei,et al.Low Frequency Wave Packet Propagation
Characteristics in East Asian Meiyu Season[J].Journal of Chengdu University of Information Technology,2019,(03):143.[doi:10.16836/j.cnki.jcuit.2019.02.008]
[2]王雨歌,郑佳锋,朱克云,等.一次西南涡过程的云-降水毫米波云雷达回波特征分析[J].成都信息工程大学学报,2019,(02):172.[doi:10.16836/j.cnki.jcuit.2019.02.011]
WANG Yuge,ZHENG Jiafeng,ZHU Keyun,et al.Analysis of Cloud-Precipitation Echo Characteristics of a Southwest Vortex[J].Journal of Chengdu University of Information Technology,2019,(03):172.[doi:10.16836/j.cnki.jcuit.2019.02.011]
[3]青 泉,罗 辉,陈刚毅.基于L波段秒级探空数据V-3θ图形的四川盆地暴雨预报模型研究[J].成都信息工程大学学报,2019,(02):186.[doi:10.16836/j.cnki.jcuit.2019.02.013]
QING Quan,LUO Hui,CHEN Gangyi.Forecasting Model of Torrential Rain in Sichuan Basin based on V-3θ
Structural Graphs of L-Band Second Level Sounding Data[J].Journal of Chengdu University of Information Technology,2019,(03):186.[doi:10.16836/j.cnki.jcuit.2019.02.013]
[4]吴秋月,华 维,申 辉,等.基于湿位涡与螺旋度的一次西南低涡强降水分析[J].成都信息工程大学学报,2019,(01):63.[doi:10.16836/j.cnki.jcuit.2019.01.013]
WU Qiuyue,HUA Wei,SHEN Hui,et al.Diagnostic Analysis of a Southwest Vortex Rainstormbased on Moist Potential Vorticity and Helicity[J].Journal of Chengdu University of Information Technology,2019,(03):63.[doi:10.16836/j.cnki.jcuit.2019.01.013]
[5]李潇濛,赵琳娜,肖天贵,等.2000-2015年青藏高原切变线统计特征分析[J].成都信息工程大学学报,2018,(01):91.[doi:10.16836/j.cnki.jcuit.2018.01.016]
LI Xiao-meng,ZHAO Lin-na,XIAO Tian-gui,et al.Statistical Characteristics Analysis of the Shear Linein the Qinghai-Tibet Plateau from 2000 to 2015[J].Journal of Chengdu University of Information Technology,2018,(03):91.[doi:10.16836/j.cnki.jcuit.2018.01.016]
[6]喻乙耽,马振峰,范广洲.华西秋雨气候特征分析[J].成都信息工程大学学报,2018,(02):164.[doi:10.16836/j.cnki.jcuit.2018.02.011]
YU Yi-dan,MA Zhen-feng,FAN Guang-zhou.The Analysis of Climatic Feature of Autumn Rainfall in West China[J].Journal of Chengdu University of Information Technology,2018,(03):164.[doi:10.16836/j.cnki.jcuit.2018.02.011]
[7]孙康慧,巩远发.20世纪70年代末云南省雨季降水的突变及原因分析[J].成都信息工程大学学报,2018,(02):177.[doi:10.16836/j.cnki.jcuit.2018.02.012]
SUN Kang-hui,GONG Yuan-fa.Abrupt Change of Precipitation in Rainy Season in YunnanProvince in Late 1970s and its Cause Analysis[J].Journal of Chengdu University of Information Technology,2018,(03):177.[doi:10.16836/j.cnki.jcuit.2018.02.012]
[8]吴树炎,顾建峰,刘海文,等.高原冬季雪深与重庆夏季降水的年际关系研究[J].成都信息工程大学学报,2018,(02):184.[doi:10.16836/j.cnki.jcuit.2018.02.013]
WU Shu-yan,GU Jian-feng,LIU Hai-wen,et al.Interannual Relationship between Winter Snow Depth over TibetanPlateau and Summer Precipitation over Chongqing[J].Journal of Chengdu University of Information Technology,2018,(03):184.[doi:10.16836/j.cnki.jcuit.2018.02.013]
[9]魏 凡,李 超.利用气象雷达信息划设雷暴飞行限制区的方法研究[J].成都信息工程大学学报,2018,(02):205.[doi:10.16836/j.cnki.jcuit.2018.02.016]
WEI Fan,LI Chao.Study on the Method of Setting Up Limited Flying area ofThunderstorm by Using Weather Radar Information[J].Journal of Chengdu University of Information Technology,2018,(03):205.[doi:10.16836/j.cnki.jcuit.2018.02.016]
[10]朱 莉,张腾飞,李华宏,等.云南一次短时强降水过程的中尺度特征及成因分析[J].成都信息工程大学学报,2018,(03):335.[doi:10.16836/j.cnki.jcuit.2018.03.017]
ZHU Li,ZHANG Teng-fei,LI Hua-hong,et al.Analysis on Meso-scale Features and Forming Reasons of a Short TimeIntensive Precipitation Case in Yunnan Province[J].Journal of Chengdu University of Information Technology,2018,(03):335.[doi:10.16836/j.cnki.jcuit.2018.03.017]
备注/Memo
收稿日期:2015-09-22 基金项目:公益性行业(气象)科研专项经费资助项目(GY-HY2012 06042)