Radar signatures of tropical cyclone tornadoes in central North Carolina

被引:20
|
作者
Schneider, Douglas
Sharp, Scott
机构
[1] Natl Weather Serv Forecast Off, Morristown, TN 37814 USA
[2] Natl Weather Serv Forecast Off, Raleigh, NC USA
关键词
D O I
10.1175/WAF992.1
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
During the tropical cyclone season of 2004, there were four tropical cyclones that spawned tornadoes in central North Carolina: Frances, Gaston, Ivan, and Jeanne. This study examines the environmental characteristics and radar signatures from these events. The tornado warning decision-making process is a difficult one during any severe weather event, but it is even more difficult in a tropical cyclone environment because of the subtlety of features and rapid tornadogenesis that can occur. Previous studies that have examined the characteristics of a tropical cyclone environment found that high low-level moisture content, high shear, and a midlevel intrusion of dry air are favorable for tornadoes. The tropical cyclones that are examined in the current study all exhibited these characteristics. Radar signatures associated with these tornadoes were more subtle and weaker when compared with nontropical cyclone tornadoes, but were still discernable. This study analyzed the radar signatures from tornadic and nontornadic storms in a tropical cyclone environment with the purpose of determining the best indicators of tornadogenesis. Three precursors were found to give good lead time for tornado touchdowns: 1) a near gate-to-gate mesocyclone rotational velocity of 20 kt ( 10.3 m s(-1)) or greater, 2) a hook or appendage signature in the reflectivity data, and 3) the presence of a velocity enhancement signature of 30 kt ( 15.4 m s(-1)) or greater between 7000 ft ( 2.1 km) and 14 000 ft ( 4.2 km) AGL. Using these signatures together in the tornado warning decision-making process can increase lead time and accuracy in the tropical cyclone environment.
引用
收藏
页码:278 / 286
页数:9
相关论文
共 50 条
  • [1] Doppler radar and lightning network observations of a severe outbreak of tropical cyclone tornadoes
    McCaul, EW
    Buechler, DE
    Goodman, SJ
    Cammarata, M
    MONTHLY WEATHER REVIEW, 2004, 132 (07) : 1747 - 1763
  • [2] UNUSUAL TROPICAL CYCLONE IN NORTH CENTRAL PACIFIC
    BURTT, TG
    HALLER, DJ
    MONTHLY WEATHER REVIEW, 1976, 104 (03) : 321 - 322
  • [3] Tropical Cyclone Tornadoes, 1950-2007
    Schultz, Lori A.
    Cecil, Daniel J.
    MONTHLY WEATHER REVIEW, 2009, 137 (10) : 3471 - 3484
  • [4] Tropical cyclone tracks and deaths in North Carolina - Not just a coastal event
    Cline, J
    24TH CONFERENCE ON HURRICANES AND TROPICAL METEOROLOGY/10TH CONFERENCE ON INTERACTION OF THE SEA AND ATMOSPHERE, 2000, : 525 - 526
  • [5] Tropical cyclone signatures in the climate
    Evans, JL
    Kempisty, T
    SYMPOSIUM ON TROPICAL CYCLONE INTENSITY CHANGE, 1998, : 115 - 118
  • [6] Tropical Cyclone Outer Size Impacts the Number and Location of Tornadoes
    Paredes, Marco
    Schenkel, Benjamin A.
    Edwards, Roger
    Coniglio, Michael
    GEOPHYSICAL RESEARCH LETTERS, 2021, 48 (24)
  • [7] Climatology of tropical cyclone tornadoes in China from 2006 to 2018
    Lanqiang BAI
    Zhiyong MENG
    Kenta SUEKI
    Guixing CHEN
    Ruilin ZHOU
    Science China(Earth Sciences), 2020, 63 (01) : 37 - 51
  • [8] Spatial Distributions of Tropical Cyclone Tornadoes by Intensity and Size Characteristics
    Moore, Todd W.
    Sokol, Nicholas J.
    Blume, Robert A.
    ATMOSPHERE, 2017, 8 (09):
  • [9] Climatology of tropical cyclone tornadoes in China from 2006 to 2018
    Lanqiang Bai
    Zhiyong Meng
    Kenta Sueki
    Guixing Chen
    Ruilin Zhou
    Science China Earth Sciences, 2020, 63 : 37 - 51
  • [10] Climatology of tropical cyclone tornadoes in China from 2006 to 2018
    Bai, Lanqiang
    Meng, Zhiyong
    Sueki, Kenta
    Chen, Guixing
    Zhou, Ruilin
    SCIENCE CHINA-EARTH SCIENCES, 2020, 63 (01) : 37 - 51