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Application of hydroclimatic drought indicators in the transboundary Prut River basin
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SYSNO ASEP 0509110 Druh ASEP J - Článek v odborném periodiku Zařazení RIV J - Článek v odborném periodiku Poddruh J Článek ve WOS Název Application of hydroclimatic drought indicators in the transboundary Prut River basin Tvůrce(i) Potopová, V. (CZ)
Cazac, V. (MD)
Boincean, B. (MD)
Soukup, J. (CZ)
Trnka, Miroslav (UEK-B) RID, ORCID, SAICelkový počet autorů 5 Zdroj.dok. Theoretical and Applied Climatology - ISSN 0177-798X
Roč. 137, č. 3-4 (2019), s. 3103-3121Poč.str. 19 s. Jazyk dok. eng - angličtina Země vyd. AT - Rakousko Klíč. slova european 2015 drought ; meteorological drought ; risk-assessment ; time-series ; streamflow ; precipitation ; romania ; vulnerability ; catchment ; impacts Vědní obor RIV DG - Vědy o atmosféře, meteorologie Obor OECD Meteorology and atmospheric sciences CEP GA16-16549S GA ČR - Grantová agentura ČR Výzkumná infrastruktura CzeCOS II - 90061 - Ústav výzkumu globální změny AV ČR, v. v. i. Způsob publikování Omezený přístup Institucionální podpora UEK-B - RVO:86652079 UT WOS 000477054700103 EID SCOPUS 85061272339 DOI 10.1007/s00704-019-02789-w Anotace The transboundary Prut River basin (PRB) is one of the most drought vulnerable areas in the Republic of Moldova, Romania, and Ukraine. The main objective of this study was to identify the response of hydrological drought to climatic conditions and cropping practice in a region with insufficient water resources. The presented work takes advantage of the development of statistical tools to analyze existing data, as well as the collection of qualitative and quantitative hydroclimatic datasets for each sub-basin region. The study also provides survey results of the impacts of climate change on agricultural water management, including agricultural water requirements and water availability, and the transition of these impacts to cropping practice. The multi-dimensional attributes of hydrological drought are defined according to the standardized streamflow index (SSI) and water-level standardized anomaly index (SWI). The standardized precipitation evapotranspiration index (SPEI) was selected for the assessment of the impact of climate drought control on hydrological drought. The streamflow/water river level is determined more by the climatic water balance deficit of the previous 6months than over longer periods. The lag times between climatic and hydrological drought are short, which can cause a hydrological drought to occur in the same season as the climatic drought that caused it. Summer streamflow droughts are most closely linked to SPEI in the same month. Summer streamflow drought in upstream areas can impact streamflow at the outlet within the same month. Winter streamflow droughts are related to longer SPEI accumulation periods resulting from snow cover. The synthesis of findings from the river basin shown that concurrent compound climate events have much more severe impact on crop failures compared to their individual occurrence. Adjustments to sowing time (15%), the introduction of more drought resistant cultivars (11%), the use of crop protection measures (9%), and shifting to new crops (8%) seem to be minor and moderate adaptation practices employed by farmers. Pracoviště Ústav výzkumu globální změny Kontakt Nikola Šviková, svikova.n@czechglobe.cz, Tel.: 511 192 268 Rok sběru 2020 Elektronická adresa https://www.researchgate.net/publication/330984312_Application_of_hydroclimatic_drought_indicators_in_the_transboundary_Prut_River_basin
Počet záznamů: 1