Have a personal or library account? Click to login
Analysis of short – term heavy rains in eastern Slovakia in the period 2003 - 2018 Cover

Analysis of short – term heavy rains in eastern Slovakia in the period 2003 - 2018

Open Access
|Nov 2020

References

  1. [1] Cannarozzo, M., Noto, L. V., & Viola, F. (2006). Spatial distribution of rainfall trends in Sicily (1921–2000). Physics and Chemistry of the Earth, Parts A/B/C, 31(18), 1201-1211.10.1016/j.pce.2006.03.022
  2. [2] Te Chow, V. (2010). Applied hydrology. Tata McGraw-Hill Education.
  3. [3] Drissia, T. K., Jothiprakash, V., & Anitha, A. B. (2019). Statistical classification of streamflow based on flow variability in west flowing rivers of Kerala, India. Theoretical and Applied Climatology, 137(3-4), 1643-1658.10.1007/s00704-018-2677-0
  4. [4] Sharma, K. P., Moore, B., & Vorosmarty, C. J. (2000). Anthropogenic, climatic, and hydrologic trends in the Kosi Basin, Himalaya. Climatic Change, 47(1-2), 141-165.10.1023/A:1005696808953
  5. [5] Hamilton, J. P., Whitelaw, G. S., & Fenech, A. (2001). Mean annual temperature and total annual precipitation trends at Canadian biosphere reserves. Environmental monitoring and assessment, 67(1-2), 239-275.10.1023/A:1006490707949
  6. [6] Lucero, O. A., & Rozas, D. (2002). Characteristics of aggregation of daily rainfall in a middle-latitudes region during a climate variability in annual rainfall amount. Atmospheric Research, 61(1), 35-48.10.1016/S0169-8095(01)00101-6
  7. [7] Hoppe, H., & Kiely, G. (1999). Precipitation over Ireland—Observed change since 1940. Physics and Chemistry of the Earth, Part B: Hydrology, Oceans and Atmosphere, 24(1-2), 91-96.10.1016/S1464-1909(98)00017-3
  8. [8] Kiely, G. (1999). Climate change in Ireland from precipitation and streamflow observations. Advances in water resources, 23(2), 141-151.10.1016/S0309-1708(99)00018-4
  9. [9] Cislaghi, M., De Michele, C., Ghezzi, A., & Rosso, R. (2005). Statistical assessment of trends and oscillations in rainfall dynamics: Analysis of long daily Italian series. Atmospheric Research, 77(1-4), 188-202.10.1016/j.atmosres.2004.12.014
  10. [10] Brázdil, R., Březina, L., Dobrovolný, P., Dubrovský, M., Halásová, O., Hostýnek, J., Kirchner, K. (2007). Vybrané přírodní extrémy a jejich dopady na Moravě a ve Slezsku. Masarykova universita, Český hydrometeorologický ústav, Ústav geoniky Akademie věd ČR.
  11. [11] Starkel, L. (1996). Geomorphic role of extreme rainfalls in the Polish Carpathians. Studia Geomorphologica Carpatho-Balcanica, 30, 21-38.
  12. [12] Tao, Y., Wang, W., Song, S., & Ma, J. (2018). Spatial and Temporal variations of precipitation extremes and seasonality over China from 1961~ 2013. Water, 10(6), 719.10.3390/w10060719
  13. [13] Tian, X., Li, D., Zhou, J., Zhou, Y., & Zhang, Z. (2019). Characteristics Analysis on Short-Time Heavy Rainfall during the Flood Season in Shanxi Province, China. Journal of Geoscience and Environment Protection, 7(03), 190.10.4236/gep.2019.73011
  14. [14] Hand, W. H., Fox, N. I., & Collier, C. G. (2004). A study of twentieth-century extreme rainfall events in the United Kingdom with implications for forecasting. Meteorological Applications, 11(1), 15-31.10.1017/S1350482703001117
  15. [15] Rulfová, Z., & Kyselý, J. (2013). Disaggregating convective and stratiform precipitation from station weather data. Atmospheric research, 134, 100-115.10.1016/j.atmosres.2013.07.015
  16. [16] Svoboda, V., Hanel, M., Máca, P., & Kyselý, J. (2016). Projected changes of rainfall event characteristics for the Czech Republic. Journal of Hydrology and Hydromechanics, 64(4), 415-425.10.1515/johh-2016-0036
  17. [17] Šatalová, B., & Kenderessy, P. (2017). Assessment of water retention function as tool to improve integrated watershed management (case study of Poprad river basin, Slovakia). Science of the Total Environment, 599, 1082-1089.10.1016/j.scitotenv.2017.04.22728511353
  18. [18] Poórová, Z., & Vranayová, Z. (2020). Green Roofs and Water Retention in Košice, Slovakia. Springer International Publishing.10.1007/978-3-030-24039-4
  19. [19] Dub, O. (1957). Hydrológia, hydrografia, hydrometria. Slovenské vydavateľstvo technickej literatúry.
  20. [20] Alkhalaf, I., Soľáková, T., Zeleňáková, M., & Gargar, I. (2018) Recent climate change in Syria: Seasonal rainfall and climatology of Syria for 1991-2009. SSP - Journal of Civil Engineering, 13(1) 77-96.10.1515/sspjce-2018-0022
  21. [21] Zeleňáková, M., Gargar, I. A. K., & Purcz, P. (2012) Multicriteria analysis in hazards assessment in Libya. Selected Scientific Papers: Journal of Civil Engineering. 7(2) 59-70.10.2478/v10299-012-0007-0
  22. [22] Kubiak-Wójcicka, K, (2018). Flow characteristics of the Vistula River at the Tczew gauging station in 1951–2010 based on Flashiness Index.pp. In Gastescu, P., Bretcan, P. (edit, 2018), Water resources and wetlands, 4th International Conference Water resources and wetlands, 5-9 September 2018, Tulcea (Romania), 119-129.
  23. [23] Svoboda, A., Pekarova, P. (1998) Katastrofálna povodeň z júla 1998 v povodí Malej Svinky–simulácia jej priebehu.(The July 1998 disastrous flood in the basin of the Malá Svinka–simulation of its course). Vodohospodársky Casopis. 46(6) 356-372.
DOI: https://doi.org/10.1515/sspjce-2020-0004 | Journal eISSN: 1338-7278 | Journal ISSN: 1336-9024
Language: English
Page range: 29 - 37
Published on: Nov 24, 2020
Published by: Technical University of Košice
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2020 Adam Repel, Martina Zeleňáková, Vinayakam Jothiprakash, Helena Hlavatá, Slávka Gałaś, Maria Manuela Portela, published by Technical University of Košice
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.