Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain

Using conventional observation data, intensive automatic weather station observation data, radar products, NCEP 1°×1° reanalysis data and other data, we have analyzed the four severe precipitation events on the east side of Fanjing Mountain in Tongren, Guizhou. These events were under the influence...

Full description

Bibliographic Details
Main Authors: Jun CHEN, Wei HE, Qun YANG, Ting LEI, Xiaolan LI, Xiaoling Du
Format: Article
Language:zho
Published: Editorial Office of Torrential Rain and Disasters 2020-04-01
Series:暴雨灾害
Subjects:
Online Access:http://www.byzh.org.cn/cn/article/doi/10.3969/j.issn.1004-9045.2020.02.006
_version_ 1827907545369411584
author Jun CHEN
Wei HE
Qun YANG
Ting LEI
Xiaolan LI
Xiaoling Du
author_facet Jun CHEN
Wei HE
Qun YANG
Ting LEI
Xiaolan LI
Xiaoling Du
author_sort Jun CHEN
collection DOAJ
description Using conventional observation data, intensive automatic weather station observation data, radar products, NCEP 1°×1° reanalysis data and other data, we have analyzed the four severe precipitation events on the east side of Fanjing Mountain in Tongren, Guizhou. These events were under the influence of low-level eastward airflow. Our analysis focuses on the formation mechanism of severe precipitation under the combined effect of low-level eastward airflow and topography, and established a conceptual model of severe precipitation on the east side of Fanjing Mountain under the influence of low-level eastward airflow. The main results are as follow. (1) The upper-level trough, the low-level shear line and the surface mesoscale convergence line are the key weather systems affecting the severe precipitation on the east side of Fanjing Mountain. (2) The shallow low-level eastward airflow plays a key role in the severe precipitation on the east side of Fanjing Mountain. When the u component of low-level airflow decreases with height, the ascending airflow at the windward slope terrain converges. When the v component of the airflow increases with height, a horizontal vortex tube being perpendicular to the orientation of mountains is generated at the windward slope terrain, where two vortex loops form due to the effect of topographic force. The vertical component of vorticity strengthens the updraft near the foot of the mountain in which is conducive to the generation of severe precipitation. (3) There are three mechanisms for the formation of the severe precipitation zone on the east side of Fanjing Mountain, that is, rainfall superposition effect formed for the convection that is trigged many times at the foot of the windward slope, organizational convection triggered by surface mesoscale convergence line itself, and "train effect" formed with the eastward motion of echo along surface mesoscale convergence line. The severe precipitation zones generated by the three mechanisms mentioned above are consistent with the orientation of surface mesoscale convergence line.
first_indexed 2024-03-13T01:09:45Z
format Article
id doaj.art-64d8e6f3e7484fd9816fe73e08527c1c
institution Directory Open Access Journal
issn 2097-2164
language zho
last_indexed 2024-03-13T01:09:45Z
publishDate 2020-04-01
publisher Editorial Office of Torrential Rain and Disasters
record_format Article
series 暴雨灾害
spelling doaj.art-64d8e6f3e7484fd9816fe73e08527c1c2023-07-06T04:41:40ZzhoEditorial Office of Torrential Rain and Disasters暴雨灾害2097-21642020-04-0139215816610.3969/j.issn.1004-9045.2020.02.0062646Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing MountainJun CHEN0Wei HE1Qun YANG2Ting LEI3Xiaolan LI4Xiaoling Du5Tongren Meteorological Office of Guizhou Province, Tongren 554300Yuping Meteorological Station of Guizhou Province, Yuping 554000Tongren Meteorological Office of Guizhou Province, Tongren 554300Tongren Meteorological Office of Guizhou Province, Tongren 554300Yuping Meteorological Station of Guizhou Province, Yuping 554000Guizhou Meteorological Observatory, Guiyang 550000Using conventional observation data, intensive automatic weather station observation data, radar products, NCEP 1°×1° reanalysis data and other data, we have analyzed the four severe precipitation events on the east side of Fanjing Mountain in Tongren, Guizhou. These events were under the influence of low-level eastward airflow. Our analysis focuses on the formation mechanism of severe precipitation under the combined effect of low-level eastward airflow and topography, and established a conceptual model of severe precipitation on the east side of Fanjing Mountain under the influence of low-level eastward airflow. The main results are as follow. (1) The upper-level trough, the low-level shear line and the surface mesoscale convergence line are the key weather systems affecting the severe precipitation on the east side of Fanjing Mountain. (2) The shallow low-level eastward airflow plays a key role in the severe precipitation on the east side of Fanjing Mountain. When the u component of low-level airflow decreases with height, the ascending airflow at the windward slope terrain converges. When the v component of the airflow increases with height, a horizontal vortex tube being perpendicular to the orientation of mountains is generated at the windward slope terrain, where two vortex loops form due to the effect of topographic force. The vertical component of vorticity strengthens the updraft near the foot of the mountain in which is conducive to the generation of severe precipitation. (3) There are three mechanisms for the formation of the severe precipitation zone on the east side of Fanjing Mountain, that is, rainfall superposition effect formed for the convection that is trigged many times at the foot of the windward slope, organizational convection triggered by surface mesoscale convergence line itself, and "train effect" formed with the eastward motion of echo along surface mesoscale convergence line. The severe precipitation zones generated by the three mechanisms mentioned above are consistent with the orientation of surface mesoscale convergence line.http://www.byzh.org.cn/cn/article/doi/10.3969/j.issn.1004-9045.2020.02.006easterly airflowsevere precipitationtopographic upliftvertical circulationmesoscale convergence linefanjing mountain
spellingShingle Jun CHEN
Wei HE
Qun YANG
Ting LEI
Xiaolan LI
Xiaoling Du
Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain
暴雨灾害
easterly airflow
severe precipitation
topographic uplift
vertical circulation
mesoscale convergence line
fanjing mountain
title Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain
title_full Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain
title_fullStr Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain
title_full_unstemmed Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain
title_short Effect of low-level eastward airflow on formation of severe precipitation on the east side of Fanjing Mountain
title_sort effect of low level eastward airflow on formation of severe precipitation on the east side of fanjing mountain
topic easterly airflow
severe precipitation
topographic uplift
vertical circulation
mesoscale convergence line
fanjing mountain
url http://www.byzh.org.cn/cn/article/doi/10.3969/j.issn.1004-9045.2020.02.006
work_keys_str_mv AT junchen effectoflowleveleastwardairflowonformationofsevereprecipitationontheeastsideoffanjingmountain
AT weihe effectoflowleveleastwardairflowonformationofsevereprecipitationontheeastsideoffanjingmountain
AT qunyang effectoflowleveleastwardairflowonformationofsevereprecipitationontheeastsideoffanjingmountain
AT tinglei effectoflowleveleastwardairflowonformationofsevereprecipitationontheeastsideoffanjingmountain
AT xiaolanli effectoflowleveleastwardairflowonformationofsevereprecipitationontheeastsideoffanjingmountain
AT xiaolingdu effectoflowleveleastwardairflowonformationofsevereprecipitationontheeastsideoffanjingmountain