巴西半干旱地区 100 年水库扩建过程中缓解干旱和水安全的演变

IF 4.6 1区 地球科学 Q2 ENVIRONMENTAL SCIENCES Water Resources Research Pub Date : 2024-08-30 DOI:10.1029/2023wr036411
Antônio Alves Meira Neto, Pedro Medeiros, José Carlos de Araújo, Bruno Pereira, Murugesu Sivapalan
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引用次数: 0

摘要

巴西东北部地区(BRN),尤其是塞阿拉州(CE),自 19 世纪末以来一直遭受严重干旱,通常导致大规模移民和成千上万人死亡的灾难性影响。在上个世纪,"干旱多边形 "地区的基础设施得到了大力发展,密集的水库网络不断扩大。本文介绍了一种简约的水文建模方法,以研究 24500 平方公里的上贾瓜里贝盆地在整个密集水库网络发展过程中的 100 年(1920-2020 年)水文演变情况。我们的目标是再现流域尺度的水文情况,并从水流量和水安全的角度分析水库扩建的结果。我们的模型结构捕捉了水库数量和库容的增长,然后将其与不断变化的用水需求相联系,从而估算出水安全(即满足需求的比例)在 100 年间的变化情况。在研究期结束时,我们观察到流域出口处的溪流明显减少,蒸发损失增加,这与不同超标频率下的溪流减少有关。虽然水库扩建使人们得以从完全易受气象干旱影响过渡到提高用水安全水平,但与此同时,干旱的影响却不成比例地加剧了,尤其是在中小型水库。据认为,小型水库在整个地区发挥了分配水资源的作用,而大型水库作为促进水安全的工具则更为有效。
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Evolution of Drought Mitigation and Water Security Through 100 Years of Reservoir Expansion in Semi-Arid Brazil
Brazil's Northeast region (BRN), especially the state of Ceará (CE), has dealt historically with severe drought events since the late 1800s, which commonly led to catastrophic impacts of mass migration and deaths of thousands of people. Throughout the last century, the “Droughts Polygon” region experienced an intense infrastructural development, with the expansion of a dense network of reservoirs. This paper presents a parsimonious hydrologic modeling approach to investigate the 100-year (1920–2020) evolution of the hydrology of the 24,500 km2 Upper Jaguaribe Basin, throughout the development of a dense reservoir network. We aimed at reproducing the hydrology at the basin scale and analyzed the outcomes of reservoir expansion in terms of water fluxes and water security. Our model's structure captured the growth in reservoir count and storage capacity, which was then confronted with an evolving water demand, allowing us to estimate how water security (i.e., proportion of demand being met) varied over the 100-year period. Significant streamflow reduction at the basin's outlet and increase in evaporation losses, associated with a decrease in streamflow at varying exceedance frequencies were observed at the end of the study period. While reservoir expansion allowed for the transition from complete vulnerability to meteorological droughts to increased levels of water security, drought impacts had, in the meantime, disproportionally intensified, especially in reservoirs of medium to small capacities. Smaller reservoirs are suggested to have played the role of distributing water resources throughout the region, while larger reservoirs were more efficient as tools to promote water security.
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来源期刊
Water Resources Research
Water Resources Research 环境科学-湖沼学
CiteScore
8.80
自引率
13.00%
发文量
599
审稿时长
3.5 months
期刊介绍: Water Resources Research (WRR) is an interdisciplinary journal that focuses on hydrology and water resources. It publishes original research in the natural and social sciences of water. It emphasizes the role of water in the Earth system, including physical, chemical, biological, and ecological processes in water resources research and management, including social, policy, and public health implications. It encompasses observational, experimental, theoretical, analytical, numerical, and data-driven approaches that advance the science of water and its management. Submissions are evaluated for their novelty, accuracy, significance, and broader implications of the findings.
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