GSTDTAP  > 地球科学
DOI10.1016/j.atmosres.2018.11.017
High-resolution simulation of an isolated tornadic supercell in Poland on 20 June 2016
Pilguj, Natalia1,3; Taszarek, Mateusz2,3; Pajurek, Lukasz3; Kryza, Maciej1
2019-04-01
发表期刊ATMOSPHERIC RESEARCH
ISSN0169-8095
EISSN1873-2895
出版年2019
卷号218页码:145-159
文章类型Article
语种英语
国家Poland
英文摘要

On 20 June 2016, a convective cell, which developed on the Polish-Slovakian border, under favorable kinematic and thermodynamic conditions, evolved into a supercell. It moved for 500 ken, heading northeast, and remained isolated during its entire lifecycle. The storm was responsible for producing multiple large hail (up to 7.5 cm) and severe wind gust events. At around 1700 UTC (+ / - 5 min), a tornado was reported near Sulow, and after moving for 21 km it dissipated near Skawinek (Lubelskie Voivodeship). Based on the damage survey, the peak intensity of the tornado was estimated at F1/T3 in the Fujita/TORRO scale. In this paper, we perform two simulations using the WRF model to evaluate the possibilities of predicting this event. The first simulation is a WRF base run, while the second version uses well established data assimilation techniques applied to the model domain with high spatial resolution. The surface observational data, together with the atmospheric soundings, are assimilated in the second model run. Three one-way nested domains were defined, with spatial resolutions of 9 km, 3 km and 1 km. Observations from meteorological stations, severe weather reports, and radar reflectivity from the POLRAD network are compared with the simulations to assess their quality. An additional parameter of an updraft helicity track is used to analyze the lifecycle of a simulated supercell. Results indicate a slight overestimation of temperature, dew point and wind speed. Our findings confirm that downscaling to convection-permitting resolution makes it possible to successfully predict tornadic supercells. Data assimilation, applied to the second model run, improved the model's performance. The model's errors, calculated by comparing the results with meteorological observation, were reduced if compared to the base run. Additionally, the number of convective cells and storm tracks was appropriate.


英文关键词Tornado Supercell Poland WRF Dynamical downscaling Data assimilation
领域地球科学
收录类别SCI-E
WOS记录号WOS:000457814600013
WOS关键词WRF MODEL ; DATA ASSIMILATION ; NONTORNADIC OUTBREAKS ; NUMERICAL-SIMULATION ; PROXIMITY SOUNDINGS ; LIDAR DATA ; PART I ; CONVECTION ; FORECASTS ; PREDICTION
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/38033
专题地球科学
作者单位1.Univ Wroclaw, Inst Geog & Reg Dev, Dept Climatol & Atmosphere Protect, Kosiby 8, PL-51621 Wroclaw, Poland;
2.Adam Mickiewicz Univ, Inst Phys Geog & Environm Planning, Dept Climatol, Bogumila Krygowskiego 10, PL-61680 Poznan, Poland;
3.Skywarn Poland, Warsaw, Poland
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Pilguj, Natalia,Taszarek, Mateusz,Pajurek, Lukasz,et al. High-resolution simulation of an isolated tornadic supercell in Poland on 20 June 2016[J]. ATMOSPHERIC RESEARCH,2019,218:145-159.
APA Pilguj, Natalia,Taszarek, Mateusz,Pajurek, Lukasz,&Kryza, Maciej.(2019).High-resolution simulation of an isolated tornadic supercell in Poland on 20 June 2016.ATMOSPHERIC RESEARCH,218,145-159.
MLA Pilguj, Natalia,et al."High-resolution simulation of an isolated tornadic supercell in Poland on 20 June 2016".ATMOSPHERIC RESEARCH 218(2019):145-159.
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