Acceso abierto

Frequency shifts in thunderstorm patterns as key precursors to flash flood events

, , , ,  y   
05 mar 2025

Cite
Descargar portada

Allen, J. 2018. Climate Change and Severe Thunderstorms. Oxford Research Encyclopedia of Climate Science. Search in Google Scholar

Allen, J., Karoly, D., Mills, G., 2011. A severe thunderstorm climatology for Australia and associated thunderstorm environments. Aust. Meteorol. Oceanogr. J., 61, 143–158. Search in Google Scholar

Antonescu, B., Burcea, S., 2010. A cloud-to-ground lightning climatology for Romania. Mon. Weather Rev., 138, 579–589. Search in Google Scholar

Betz, H., Schmidt, K., Laroche, P., Blanchet, P., Oettinger, W., Defer, E., Dziewit, Z., Konarski, J., 2009. LINET-An international lightning detection network in Europe. Atmos. Res., 91, 564–573. Search in Google Scholar

Bissolli, P., Dittmann, E., 2001. The objective weather type classification of the German Weather Service and its possibilities of application to environmental and meteorological investigations. Meteorol. Z., 10, 253–260. Search in Google Scholar

Bluestein, H. B. 2013. Severe Convective Storms and Tornadoes. Observations and Dynamics. Springer-Verlag Berlin Heidelberg. 456 pp. Search in Google Scholar

Bochníček, O., Borsányi, P., Čepčeková, E., Faško, P., Chmelík, M., Jančovičová, Ľ., Kapolková, H., Labudová, L., Mikulová, K., Mišaga, O., Nejedlík, P., Pribullová, A., Snopková, Z., Šťastný, P., Švec, M., Turňa, M. 2015. Climate Atlas of Slovakia, Slovak Hydrometeorological Institute, Bratislava, 130 pp. Search in Google Scholar

Brádka, J., 1968. Typification in meteorology (Original in Czech: Typisace v meteorologii). Meteorologické zprávy, 21(4), 122–125. Search in Google Scholar

Brooks, H.E., Lee, J.W., Craven, J.P., 2003. The spatial distribution of severe thunderstorm and tornado environments from global reanalysis data. Atmos. Res., 67, 73–94. Search in Google Scholar

Burcea, S., Cică, R., Bojariu, R. 2019. Radar-derived convective storms climatology for the Prut River basin: 2003–2017. Nat. Hazards Earth Syst. Sci., 19, 1305–1318. Search in Google Scholar

Croft, P., Shulman, M., 1989. A radar-based thunderstorm and intense thunderstorm day climatology for New Jersey. Natl. Weather Dig., 14, 6–15. Search in Google Scholar

Czernecki, B., Taszarek, M., Kolendowicz, L., Konarski, J., 2016. Relationship between human observations of thunderstorms and the PERUN lightning detection network in Poland. Atmos. Res., 167, 118–128. Search in Google Scholar

Deutscher Wetterdienst (DWD), 2024. Nowcasting applications. Retrieved from https://www.dwd.de/EN/research/weatherforecasting/met_applications/nowcasting/nowcasting_node.html. Accessed 2024–11–05. Search in Google Scholar

Diakakis, M., Boufidis, N., Salanova Grau, J.M., Andreadakis, E., Stamos, I., 2020. A systematic assessment of the effects of extreme flash floods on transportation infrastructure and circulation: The example of the 2017 Mandra flood. International Journal of Disaster Risk Reduction, 47, 101542. Search in Google Scholar

Dixon, M., Wiener, G., 1993. TITAN: Thunderstorm identification, tracking, analysis, and nowcasting-A radar-based methodology. J. Atmos. Oceanic Technol., 10(6), 785–797. Search in Google Scholar

Doswell, C., Brooks, H., Maddox, R., 1996. Flash flood forecasting: An ingredients-based methodology. Weather Forecast., 11(4), 560–581. Search in Google Scholar

Dowdy, A., 2020. Climatology of thunderstorms, convective rainfall and dry lightning environments in Australia. Clim. Dyn., 54, 3269–3285. Search in Google Scholar

Elsom, D., Webb, J., 2017. Lightning deaths in the UK: a 30-year analysis of the factors contributing to people being struck and killed. Int. J. Meteorol., 42, 8–26. Search in Google Scholar

Goudenhoofdt, E., Delobbe L., 2013. Statistical characteristics of convective storms in Belgium derived from volumetric weather radar observations. J. Appl. Meteor. Climatol., 52, 918–934. Search in Google Scholar

Haberlie, A., Ashley, W., Battisto, C., Gensini, V., 2022. Thunderstorm activity under intermediate and extreme climate change scenarios. Geophys. Res. Lett., 49. Search in Google Scholar

Hayward, L., Whitworth, M., Pepin, N., Dorling, S., 2023. Thunderstorm tracking in Northwest Europe for enhanced hazard preparedness. Int. J. Climatol., 43, 894–4916. Search in Google Scholar

Hess, P., Brezowsky, H., 1952. Catalog of major weather conditions in Europe (Original in German: Katalog der Grosswetterlagen Europas). Berichte des Deutschen Wetterdienstes in der US-Zone, Nr. 33, Bad Kissingen, 39 pp. Search in Google Scholar

Hlavčová, K., Kohnová, S., Borga, M., Horvát, O., Šťastný, P., Pekárová, P., Majerčáková, O., Danáčová, Z., 2016. Post-event analysis and flash flood hydrology in Slovakia. J. Hydrol. Hydromech., 64, 304–315. Search in Google Scholar

Hocker, J. E., Basara J. B., 2008. A geographic information system–based analysis of supercells across Oklahoma from 1994 to 2003. J. Appl. Meteor. Climatol., 47, 1518–1538. Search in Google Scholar

Houston, A. L., N. A. Lock, J. Lahowetz, B. L. Barjenbruch, G. Limpert, C. Oppermann, 2015. Thunderstorm Observation by Radar (ThOR): An Algorithm to Develop a Climatology of Thunderstorms. J. Atmos. Oceanic Technol., 32, 961–981. Search in Google Scholar

James, P.M., Reichert, B.K., Heizenreder, D., 2018. NowCastMIX: Automatic integrated warnings for severe convection on nowcasting time scales at the German Weather Service. Weather Forecast., 33, 1413–1433. Search in Google Scholar

Johnson, J., MacKeen, P., Witt, A., Mitchell, E., Stumpf, G., Eilts, M., Thomas, K., 1998. The Storm Cell Identification and Tracking Algorithm: An enhanced WSR-88D algorithm. Weather Forecast., 13, 263–276. Search in Google Scholar

Kyznárová, H., Novák, P., 2023. Evaluation of radar products estimating probability of hail occurrence and their use in CHMI. Meteorologické zprávy, 76, 42–51. Search in Google Scholar

LaDochy, S., Witiw, M., 2023. Thunderstorms and Thunderstorm-Associated Severe Weather. Fire and Rain, 143–162. Search in Google Scholar

Lakshmanan, V., Kingfield, D., 2015. Extracting the Climatology of Thunderstorms. Machine Learning and Data Mining Approaches to Climate Science, 3, 71–79. Search in Google Scholar

Manzato, A., Serafin, S., Miglietta, M.M., Kirshbaum, D., Schulz, W., 2022. A pan-Alpine climatology of lightning and convective initiation. Mon. Weather Rev., 150, 2867–2884. Search in Google Scholar

Markovič, L., Faško, P., Pecho, J., 2021. Climatology of the extreme heavy precipitation events in Slovakia in the 1951-2020 period. Acta Hydrol. Slov., 22, 294–303. Search in Google Scholar

Markowski, P., Richardson, Y. 2010. Mesoscale Meteorology in Midlatitudes. Wiley-Blackwell. Penn State University, USA, 407 pp. Search in Google Scholar

Medici, G., Cummins, K.L., Cecil, D.J., Koshak, W.J., Rudlosky, S.D., 2017. The Intracloud Lightning Fraction in the Contiguous United States. Mon. Weather Rev., 145, 4481–4499. Search in Google Scholar

Méri, L., Gaál, L., Bartok, J., Gazak, M., Gera, M., Jurašek, M., Kelemen, M., Gallo, M., 2021. Improved radar composites and enhanced value of meteorological radar data using different quality indices. Sustainability, 13, 5285. Search in Google Scholar

Mondal, U., Kumar, A., Panda, S., Sharma, D., Das, S., 2024. Comprehensive study of thunderstorm indices threshold favorable for thunderstorms during monsoon season using WRF–ARW model and ERA5 over India. Geoenviron. Disasters, 11, 1–31. Search in Google Scholar

Novák, P., Kyznarová, H., 2011. Climatology of lightning in the Czech Republic. Atmos. Res., 100(4), 318–333. Search in Google Scholar

Pecho, J., 2005. Possible impact of expected climate change on the occurrence of storms in Slovakia (Original in Slovak: Možný vplyv očakávanej klimatickej zmeny na výskyt búrok na Slovensku). Master thesis. Bratislava, Comenius University Bratislava, 89 pp. Search in Google Scholar

Pekárová, P., Mészáros, J., Miklánek, P., Pekár, J., Siman, C., Podolinská, J., 2021. Post-flood field investigation of the June 2020 flash flood in the upper Muráň River basin and the catastrophic flash flood scenario. J. Hydrol. Hydromech., 69, 288-299. Search in Google Scholar

Piper, D., Kunz, M., Allen, J., Mohr, S., 2019. Investigation of the temporal variability of thunderstorms in central and western Europe and the relation to large-scale flow and teleconnection patterns. Q. J. R. Meteorol. Soc., 145, 3644–66. Search in Google Scholar

Púčik, T., Castellano, C., Groenemeijer, P., Kühne, T., Rädler, A., Antonescu, B., Faust, E., 2019. Large hail incidence and its economic and societal impacts across Europe. Mon. Weather Rev., 147, 2645–2664. Search in Google Scholar

Púčik, T., Groenemeijer, P., Rädler, A., Tijssen, L., Nikulin, G., Prein, A., Meijgaard, E., Fealy, R., Jacob, D., Teichmann, C., 2017. Future changes in European severe convection environments in a regional climate model ensemble. J. Climate, 30, 6771–94. Search in Google Scholar

Qie, X., Yuan, S., Chen, Z., Wang, D., Liu, D., Sun, M., Sun, Z., Srivastava, A., Zhang, H., Lu, J., Xiao, H., Bi, Y., Feng, L., Tian, Y., Xu, Y., Jiang, R., Liu, M., Xiao, X., Duan, S., Yu, Y., 2020. Understanding the dynamical-microphysical-electrical processes associated with severe thunderstorms over the Beijing metropolitan region. Sci. China Earth Sci., 64, 10–26. Search in Google Scholar

Rädler, A., Groenemeijer, P., Faust, E., Sausen, R., Púčik, T., 2019. Frequency of severe thunderstorms across Europe expected to increase in the 21st century due to rising instability. Clim. Atmos. Sci., 2, 1–5. Search in Google Scholar

Schulz, W., Cummins, K., Diendorfer, G., Dorninger, M., 2005. Cloud-to-ground lightning in Austria: A 10-year study using data from a lightning location system. J. Geophys. Res., 110. Search in Google Scholar

Seeley, J.T. and Romps, D.M. 2015. The effect of global warming on severe thunderstorms in the United States. J. Climate, 28, 2443–2458. Search in Google Scholar

Seres, A., Horvath, A. 2015. Thunderstorm climatology in Hungary using Doppler radar data. Idojaras, 119, 185–196. Search in Google Scholar

Šinger, M. 2021b. The influence of orography on supercells in Slovakia (Original in Slovak: Vplyv orografie na supercely na Slovensku). Dissertation thesis. Bratislava, Comenius University Bratislava, 186 pp. Search in Google Scholar

Šinger, M., 2021a. A case study of mesocyclonic tornado in Gemerská Ves (Original in Slovak: Prípadová štúdia mezocyklonálneho tornáda v Gemerskej Vsi). Meteorologický časopis, 24, 33–42. Search in Google Scholar

Sleziak, P., Jančo, M., Danko, M., Méri, L., Holko, L., 2023. Accuracy of radar-estimated precipitation in a mountain catchment in Slovakia. J. Hydrol. Hydromech., 71, 111–122. Search in Google Scholar

Slovak Hydrometeorological Institute (SHMI), 2023. Types of weather situations (Original in Slovak: Typy poveternostných situácií). Available at: https://www.shmu.sk/sk/?page=8. Accessed 5 Dec. 2023. Search in Google Scholar

Slovak Hydrometeorological Institute (SHMI), 2024. Slovak radar network (Original in Slovak: Slovenská rádiolokačná sieť). Available at: https://www.shmu.sk/sk/?page=1566. Accessed 22 Apr. 2024. Search in Google Scholar

Taszarek, M., Allen, J., Púčik, T., Groenemeijer, P., Czernecki, B., Kolendowicz, L., Lagouvardos, K., Kotroni, V. Schulz, W., 2019. A Climatology of Thunderstorms across Europe from a Synthesis of Multiple Data Sources. Journal of Climate, 32(6), 1813–1837. Search in Google Scholar

Twardosz, R., Niedzwiedz, T., Łupikasza, E., 2011. The influence of atmospheric circulation on the type of precipitation (Kraków, southern Poland). Theor. Appl. Climatol., 104, 233–250. Search in Google Scholar

Vido, J., Borsányi, P., Nalevanková, P., Hanzelová, M., Kučera, J., Skvarenina, J., 2023. Thunderstorm climatology of Slovakia between 1984–2003. Preprint. Search in Google Scholar

Wapler, K. 2013. High-resolution climatology of lightning characteristics within Central Europe. Meteor. and Atmos. Phys., 122, 175–184. Search in Google Scholar

Wapler, K., Göber, M., Trepte, S., 2012. Comparative verification of different nowcasting systems to support optimisation of thunderstorm warnings. Adv. Sci. Res., 8, 121–127. Search in Google Scholar

Wapler, K., James, P., 2014. Thunderstorm occurrence and characteristics in Central Europe under different synoptic conditions. Atmos. Res., 158, 231–244. Search in Google Scholar

Wei, Q., Sun, J., Zhang, Y., Liu, D., Sun, Z., Liu, M., & Ma, Z., 2023. Statistical characteristics of thunderstorm activity in the middle reaches of the Yangtze River Basin based on a five-year cloud-to-ground lighting data set. Geoph. Res. Let., 50, e2023GL106498. Search in Google Scholar

Židek, D., Lipina, P., 2003. Instructions for observers of ČHMÚ meteorological stations (Original in Czech: Návod pro pozorovatele meteorologických stanic ČHMÚ). Ostrava 2003, 5-70. Search in Google Scholar

Zrnic, D.S., Ryzhkov, A.V. 1999. Polarimetry for weather surveillance radars. Bull. Am. Meteorol. Soc., 80(3), 389–406. Search in Google Scholar

Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Ingeniería, Introducciones y reseñas, Ingeniería, otros