Articles | Volume 19, issue 7
https://doi.org/10.5194/nhess-19-1305-2019
https://doi.org/10.5194/nhess-19-1305-2019
Research article
 | 
03 Jul 2019
Research article |  | 03 Jul 2019

Radar-derived convective storms' climatology for the Prut River basin: 2003–2017

Sorin Burcea, Roxana Cică, and Roxana Bojariu

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Cited articles

American Meteorological Society: Cell, Glossary of Meteorology, available at: http://glossary.ametsoc.org/wiki/Cell (last access: 12 May 2019), 2018. 
Brooks, H. E. and Doswell, C. A.: Some aspects of the international climatology of tornadoes by damage classification, Atmos. Res., 56, 191–201, https://doi.org/10.1016/S0169-8095(00)00098-3, 2001. 
Brooks, H. E. and Stensrud, D. J.: Climatology of heavy rain events in the United States from hourly precipitation observations, Mon. Weather Rev., 128, 1194–1201, https://doi.org/10.1175/1520-0493(2000)128<1194:COHREI>2.0.CO;2, 2000. 
Cărbunaru, D., Stefan, S., Sasu, M., and Stefănescu, V.: Analysis of Convective Thunderstorm Split Cells in South-Eastern Romania, International Journal of Atmospheric Sciences, 2013, 162541, https://doi.org/10.1155/2013/162541, 2013. 
Cică, R. , Burcea, S., and Bojariu, R.: Assessment of severe hailstorms and hail risk using weather radar data, Met. Apps., 22, 746–753, https://doi.org/10.1002/met.1512, 2015. 
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Short summary
The mapping of convective storms in the area of the transboundary Prut River basin was developed using a 15-year radar dataset (2003–2017). The analysis is based on data sampled in successive 6 min scans of the atmosphere, to detect and track the convective storms. The results highlighted a yearly, monthly, and daily variation of convective activity but also spatial distribution patterns. The study of atmospheric convection is important in assessing the risks associated with extreme weather.
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