...
首页> 外文期刊>Hydrology and Earth System Sciences >Assessing the potential hydrological impact of the Gibe III Dam on Lake Turkana water level using multi-source satellite data
【24h】

Assessing the potential hydrological impact of the Gibe III Dam on Lake Turkana water level using multi-source satellite data

机译:使用多源卫星数据评估吉贝三世大坝对图尔卡纳湖水位的潜在水文影响

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Lake Turkana, the largest desert lake in the world, is fed by ungauged or poorly gauged river systems. To meet the demand of electricity in the East African region, Ethiopia is currently building the Gibe III hydroelectric dam on the Omo River, which supplies more than 80% of the inflows to Lake Turkana. On completion, the Gibe III dam will be the tallest dam in Africa with a height of 241 m. However, the nature of interactions and potential impacts of regulated inflows to Lake Turkana are not well understood due to its remote location and unavailability of reliable in situ datasets. In this study, we used 12 yr (1998–2009) of existing multi-source satellite and model-assimilated global weather data. We used a calibrated multi-source satellite data-driven water balance model for Lake Turkana that takes into account model routed runoff, lake/reservoir evapotranspiration, direct rain on lakes/reservoirs and releases from the dam to compute lake water levels. The model evaluates the impact of the Gibe III dam using three different approaches – a historical approach, a rainfall based approach, and a statistical approach to generate rainfall-runoff scenarios. All the approaches provided comparable and consistent results. Model results indicated that the hydrological impact of the Gibe III dam on Lake Turkana would vary with the magnitude and distribution of rainfall post-dam commencement. On average, the reservoir would take up to 8–10 months, after commencement, to reach a minimum operation level of 201 m depth of water. During the dam filling period, the lake level would drop up to 1–2 m (95% confidence) compared to the lake level modeled without the dam. The lake level variability caused by regulated inflows after the dam commissioning were found to be within the natural variability of the lake of 4.8 m. Moreover, modeling results indicated that the hydrological impact of the Gibe III dam would depend on the initial lake level at the time of dam commencement. Areas along the Lake Turkana shoreline that are vulnerable to fluctuations in lake levels due to the Gibe III dam were also identified. This study demonstrates the effectiveness of using existing multi-source satellite data in a basic modeling framework to assess the potential hydrological impact of an upstream dam on a terminal downstream lake. The results obtained from this study could also be used to evaluate alternative dam-filling scenarios and assess the potential impact of the dam on Lake Turkana under different operational strategies.
机译:图尔卡纳湖是世界上最大的沙漠湖,由未开垦或测井不佳的河流系统供食。为了满足东非地区的电力需求,埃塞俄比亚目前正在奥莫河上修建吉贝三世大坝,该水坝向图尔卡纳湖的流入量占80%以上。建成后,吉贝三世大坝将成为非洲最高的水坝,高241 m。但是,由于图尔卡纳湖的位置偏远且缺乏可靠的原位数据集,因此对其相互作用的性质以及调节流入图尔卡纳湖的潜在影响尚不甚了解。在这项研究中,我们使用了12年(1998-2009年)的现有多源卫星和模型辅助的全球天气数据。我们针对图尔卡纳湖使用了经过校准的多源卫星数据驱动的水平衡模型,该模型考虑了径流模型,湖泊/水库蒸散量,湖泊/水库的直接降雨以及大坝的释放来计算湖泊水位。该模型使用三种不同的方法评估Gibe III大坝的影响-历史方法,基于降雨的方法和统计方法以生成降雨-径流情景。所有方法均提供了可比且一致的结果。模型结果表明,吉贝三世大坝对图尔卡纳湖的水文影响将随大坝开工后降雨的大小和分布而变化。平均而言,水库启动后最多需要8-10个月才能达到201 m的最低运行水位。与没有水坝模拟的湖泊水位相比,在水坝填塞期间,水位将下降1-2 m(置信度为95%)。大坝投产后,由调节流量引起的湖泊水位变化被发现在湖泊的自然变化量4.8 m之内。此外,建模结果表明,吉贝三世大坝的水文影响将取决于大坝启动时的初始湖泊水位。还确定了图尔卡纳湖沿岸地区由于吉贝三世大坝而易受湖泊水位波动影响的区域。这项研究表明,在基本的建模框架中使用现有的多源卫星数据来评估上游大坝对下游下游湖泊的潜在水文影响是有效的。从这项研究中获得的结果还可以用于评估其他大坝填埋方案,并评估在不同的运营策略下大坝对图尔卡纳湖的潜在影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号