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首页> 外文期刊>Journal of water resource and protection >Low Flow Trends and Frequency Analysis in the Blue Nile Basin, Ethiopia
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Low Flow Trends and Frequency Analysis in the Blue Nile Basin, Ethiopia

机译:埃塞俄比亚青尼罗河盆地的低流量趋势和频率分析

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Low flow analysis provides crucial information for the planning and design water resource development, risk assessment and environmental flow management. Understanding the low flow regimes and evaluating the magnitudes for incorporating in water resources management is vital for the countries like Ethiopia where demand for water is increasing. However, there were hardly enough studies in understanding the trends of low flow and frequency analysis. Therefore, this study focuses on evaluation of the trends in low flows and regional low flow analysis in the Blue Nile Basin, Ethiopia. In order to carry out the study, 15 river sub-basins in the Blue Nile Basin were selected based on the long term data availability and presence of quality of data. The 3-day sustained low flow (3d-slf), the 7-day sustained low flow (7d-slf) and the 14-day sustained low flow (14d-slf) models were used to extract the data from the daily time series stream data obtained from MoWIE. Trends in low flow were analyzed separately by using Mann-Kendall (MK) trend test. Low flow frequency analysis was used to estimate the long term low flow quantiles. In addition, regional analysis for estimating the quantiles for ungaged catchments was also developed based on the regional growth curve and catchment characteristic of drainage basins. The results indicated that 3d-slf, 7d-slf and 14d-slf models of low flow series indicated no significant difference for each station at 95% CI. Out of the 15 selected stations, 12 of stations have indicated decreasing; two stations indicated increasing and remaining one station with no trend. Mainly decreasing trend was associated with the land cover and climate change which results in increasing runoff and evapotranspiration respectively. Weibull distribution-GEV and LGN was found best fit based on the L-Moment Ratio Diagram (L-MRD). Hence quantile estimations have indicated diminishing magnitudes of low flow quintiles for 2 - 500 years return periods. Regional low frequency analysis has provided a very good relationship between discharge and catchment characteristics with an R~2 of 0.72. Where area (A) and rainfall (R) followed by slope were found sensitive to compute in developing the regional region equations between mean low flows and the physiographic data. This study indicated that there needs to be a new water management scenario and adaptation mechanism of climate change and land use land cover dynamics for utilizing water resource in the Blue Nile Basin.
机译:低流量分析为规划和设计水资源开发,风险评估和环境流量管理提供了关键信息。对于像埃塞俄比亚这样对水需求不断增长的国家,了解低流量制度并评估将其纳入水资源管理的程度至关重要。但是,几乎没有足够的研究来了解低流量和频率分析的趋势。因此,本研究侧重于评估埃塞俄比亚青尼罗河流域的低流量趋势和区域低流量分析。为了进行这项研究,根据长期的数据可用性和数据质量的存在,选择了Blue Nile盆地的15个流域。使用3天持续低流量(3d-slf),7天持续低流量(7d-slf)和14天持续低流量(14d-slf)模型来提取每日时间序列中的数据从MoWIE获得的流数据。使用Mann-Kendall(MK)趋势测试分别分析了低流量趋势。低流量频率分析用于估计长期低流量分位数。此外,还根据区域增长曲线和流域的汇水特征,开展了区域分析,以估算未覆盖流域的分位数。结果表明,低流量序列的3d-slf,7d-slf和14d-slf模型表明,在95%CI的情况下,每个测站均无显着差异。在所选的15个电台中,有12个电台显示减少;两个站表示增加,剩下一个站没有趋势。减少的趋势主要与土地覆盖和气候变化有关,分别导致径流和蒸散量的增加。根据L矩比图(L-MRD),发现Weibull分布GEV和LGN最合适。因此,分位数估计表明,在2-500年的回归期内,低流量五分位数的幅度逐渐减小。区域低频分析在流量和集水特征之间提供了很好的关系,R〜2为0.72。发现面积(A)和降雨(R)后跟坡度对计算平均低流量和地貌数据之间的区域方程很敏感,因此很容易计算。该研究表明,在青尼罗河流域利用水资源需要有一个新的水资源管理方案,气候变化和土地利用土地覆盖动态的适应机制。

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