Finescale Doppler Radar Observation of a Tornado and Low-Level Misocyclones within a Winter Storm in the Japan Sea Coastal Region
Author:
Affiliation:
1. Meteorological Research Institute, Tsukuba, Japan
2. East Japan Railway Company, Saitama, Japan
3. Railway Technical Research Institute, Tokyo, Japan
4. Disaster Prevention Research Institute, Kyoto University, Kyoto, Japan
Abstract
Publisher
American Meteorological Society
Subject
Atmospheric Science
Link
http://journals.ametsoc.org/mwr/article-pdf/139/2/351/4260986/2010mwr3247_1.pdf
Reference47 articles.
1. Meso-scale features of heavy snowfalls in Japan Sea coastal regions of Japan (in Japanese).;Asai;Tenki,1988
2. Mobile Doppler radar observations of a tornado in a supercell near Bassett, Nebraska, on 5 June 1999. Part I: Tornadogenesis.;Bluestein;Mon. Wea. Rev.,2003
3. Mobile Doppler radar observations of a tornado in a supercell near Bassett, Nebraska, on 5 June 1999. Part II: Tornado-vortex structure.;Bluestein;Mon. Wea. Rev.,2003
4. Doppler radar observations of dust devils in Texas.;Bluestein;Mon. Wea. Rev.,2004
5. Improved tornado detection using simulated and actual WSR-88D data with enhanced resolution.;Brown;J. Atmos. Oceanic Technol.,2002
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