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Temporal analysis of water-energy nexus indicators for hydropower generation and water pumping in the Lower Blue Nile Basin

机译:下蓝尼罗河流域水电站水能Nexus指标的时间分析

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This study performs a temporal analysis of nine water-energy nexus indicators for hydropower generation and irrigation water pumping. The Blue Nile, a major tributary of the Nile, within Sudan is taken as an example to demonstrate the temporal evolution of the nine nexus indicators. The indicators are water-energy productivity, firm daily energy generation, percentage of days at power generation capacity, variation in daily energy generation, annual energy generation, highest daily pumping energy, lowest daily pumping energy, variability in daily pumping energy, and annual pumping energy. A daily calibrated and validated water balance model of the Lower Blue Nile is used to construct time series for the nine indicators from 1984 to 2016. Time series analysis is performed to detect significant trends and regime shifts in the nine indicators. The analysis reveals that the heightening of the Roseires Dam in 2012/2013, one of the dams in the study region, resulted in significant shifts in annual energy generation, percentage of days at power generation capacity, variation in daily energy generation, water-energy productivity, and annual pumping energy. The significant shift (an increase in this case) that occurred in the percentage of days at power generation capacity indicates that the hydropower capacity of the Roseires Dam could be raised to utilize its hydropower potential more efficiently. It is shown that annual hydro-energy generation in the study region is dependent on water availability in the dry season (November to June). The temporal analysis of the nexus indicators demonstrates ability to detect significant natural phenomena and human interventions in the hydrological system. Understanding the temporal dynamics of the water-energy nexus is key to efficient utilization of water and energy resources, especially in a basin like the Nile where considerable alterations to the headwaters are underway.
机译:该研究对水电一体和灌溉水泵进行了九个水能Nexus指标进行了时间分析。苏丹在尼罗河的一个主要支流的蓝色尼罗河被认为是展示九个Nexus指标的时间演变。该指标是水,能源效率,公司日常发电,在发电量天的百分比,在日常能源发电的变化,每年的发电,最高每天抽能量,最低每天抽能量,变异每天抽能源,年抽水活力。下蓝尼罗河的每日校准和验证的水平衡模型用于构建1984年至2016年九个指标的时间序列。进行时间序列分析,以检测九个指标中的重大趋势和政权变化。该分析表明,2012/2013年的Roseires Dam的提高,研究区域的大坝之一,导致年能源的显着变化,发电能力下的天数,日常能量产生的变化,水能生产力和年度泵送能量。在发电能力的天数的百分比上发生的显着变化(这种情况的增加)表明,可以提高玫瑰花大坝的水电容量以更有效地利用其水电潜力。结果表明,研究区域的年水力 - 能源产生依赖于干燥季节(11月至6月)的水可用性。 Nexus指标的时间分析表明了检测水文系统中有重大的自然现象和人类干预的能力。了解水能Nexus的时间动态是有效利用水和能源的关键,尤其是在像尼罗河这样的盆地中,正在进行相当大的改变。

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