Space-time variations of hydrological drought severities and trends in the semi-arid Euphrates Basin, Turkey

被引:0
作者
Okan Mert Katipoğlu
Reşat Acar
机构
[1] Erzincan Binali Yıldırım University,Department of Civil Engineering
[2] Atatürk University,Department of Civil Engineering
来源
Stochastic Environmental Research and Risk Assessment | 2022年 / 36卷
关键词
Drought; Drought index; Drought map; Interpolation; Spatio-temporal analysis; Trend analysis;
D O I
暂无
中图分类号
学科分类号
摘要
The main purpose of this study is to map the spatio-temporal variation of hydrological drought severities in the Euphrates Basin by using Kriging, Radial Based Function (RBF), Inverse Distance Weighting (IDW), Local Polynomial Interpolation (LPI), and Global Polynomial Interpolation (GPI) methods and to determine the distribution of hydrological drought trends. For this purpose, 18 streamflow observation stations and grid-based ERA5 reanalysis data were employed in and around the Euphrates Basin. The standardized runoff index (SRI) was calculated on monthly, 3-month, and 12-month time scales to determine hydrological droughts. Hydrological drought trends were determined by Mann Kendall (MK) and Modified Mann Kendall (MMK) tests. According to SRI, spatial-temporal distributions of droughts were mapped by Kriging, RBF, IDW, GPI, and LPI methods in the Geographical Information Systems environment. The LPI and Kriging method was selected as the most effective methods to predict hydrological droughts based on the cross-validation error. As a result of the trend analysis, the predominance of decreasing SRI trends in May (61.1%), June (72.2%), July (55.6%), August (61.1%) indicates that the basin is at risk of hydrological drought, especially in summer. According to the maps of spatial droughts, the widespread distribution of droughts in the basin indicated that the basin was greatly affected by hydrological droughts. For this reason, it has been emphasized that transboundary water effective management between riparian countries, planning of water structures, and effective implementation of the drought management plan is of great importance.
引用
收藏
页码:4017 / 4040
页数:23
相关论文
共 183 条
  • [31] Zareian MJ(2009)assessment of hydrological drought revisited Water Resour Manage 23 881-891
  • [32] Adamowski JF(2018)Assessment of drought risk index using drought hazard and vulnerability indices Arab J Geosci 11 606-628
  • [33] Apaydin H(2020)Consequences of the Droughts in the Euphrates-Tigris Basin International J Water Manage Dipl 1 29-141
  • [34] Sonmez FK(2016)Mapping of drought for Sperchios River basin in central Greece Hydrol Sci J 61 881-143
  • [35] Yildirim YE(2016)Comparison of two hydrological drought indices Perspect Sci 8 626-286
  • [36] Ayantobo OO(1992)A comparison of geostatistical procedures for spatial analysis of precipitation in mountainous terrain Agric For Meteorol 58 119-433
  • [37] Li Y(2017)Spatiotemporal changes of reference evapotranspiration in the highest-latitude region of China Water 9 493-5658
  • [38] Song S(2016)Meteorological drought in Bangladesh: assessing, analysing and hazard mapping using SPI, GIS and monthly rainfall data Environ Earth Sci 75 1026-19
  • [39] Yao N(2008)Use of a standardized runoff index for characterizing hydrologic drought Geophys Res Lett 10 131-180
  • [40] Bagheri F(2008)Droughts: the impact of semantics and perceptions Water Policy 526 274-120