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Study offers a hybrid solution to ease GERD disagreements

机译:学习提供混合解决方案,以便于凸起的分歧

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The coupling of the operation of the Grand Ethiopian Renaissance Dam (GERD) in Ethiopia with variable solar and wind power within the East African Power Pool (EAPP) could help overcome conflicting interests between Ethiopia, Sudan and Egypt, over the future operation of Africa's largest hydro-power plant, according to a new study by researchers from the Vrije Universiteit Brussel, KU Leuven, the University of Bonn and the Potsdam Institute for Climate Impact Research. The results of the study, which were announced on 8 April in the scientific journal Nature Energy, show that integration of a complementary hydro-solar-wind production system would be able to deliver fivefold benefits across the three countries: decarbonizing power generation in the EAPP; ensuring compliance with Sudan's environmental flow needs; optimizing GERD infrastructure use; harmonizing the annual refilling schedules ofthe GERD and Egypt's High Aswan Dam, and supporting diversification of Ethiopia's power generation mix for domestic use and exports. "Our results call for integrated hydro-solar-wind planning to be taken up in the GERD negotiations," the lead author of the study, Sebastian Sterl of Vrije Universiteit Brussel, told H&D.
机译:埃塞俄比亚的埃塞俄比亚大坝(GERD)的运作耦合,在东非电力游泳池(EAPP)内的变量和风电(EAPP)有助于克服埃塞俄比亚,苏丹和埃及之间的互相矛盾,而不是非洲最大的未来运作水力发电厂,根据Vrije Universiteit Brussel,Ku Leuven,Bonn大学和波茨坦的气候影响研究所研究人员的新研究。该研究的结果是在4月8日在科学期刊大学能源中宣布的,表明互补水力太阳能 - 风力生产系统的整合将能够在这三个国家提供五倍的福利:脱碳在EAPP中发电;确保符合苏丹的环境流量;优化GERD基础架构使用;协调杰尔德和埃及高达湾大坝的年度补充时间表,以及支持埃塞俄比亚发电组合的多样化,为国内使用和出口。 “我们的成绩致电综合水力 - 太阳风规划将在GERD谈判中被接管,”Vrije Universiteit Brussel的Sebastian Sentl的牵头作者告诉H&D。

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