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首页> 外文期刊>Journal of Water Resources Planning and Management >Analysis of the Coordinated Operation of Reservoirs and Weirs during the Management of Nakdong River Water Resources
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Analysis of the Coordinated Operation of Reservoirs and Weirs during the Management of Nakdong River Water Resources

机译:洛东江水资源管理中水堰协调调度分析。

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摘要

This study discerns optimal rules for coordinated operation of existing dams and eight newly constructed weirs in the Nakdong River through use of a system network while considering the water supply and operating facilities. To determine the operation rules, capacity was simulated by reservoir operations modeling and evaluated separately under the following three cases: (1) when dams were operated individually; (2) when they were operated in conjunction with other dams; and (3) when dams and weirs were operated in conjunction with each other. The water supply capacity of the Nakdong was highest in Case 3. When considering operational losses (9.1 and 14.8% in Cases 2 and 3, respectively), water supply decreased. Findings show that when water levels drop below the target, hydrological facilities should flexibly adjust water storage and flow rates at each dam in the system. Further studies are needed to investigate the influence of agricultural reservoirs and river channel discharged flows and to identify regions vulnerable to water shortages driven by future fluctuations in water resources due to climate change. (C) 2017 American Society of Civil Engineers.
机译:本研究在考虑供水和运营设施的情况下,通过系统网络,确定了能洞河中现有大坝和八个新建堰的协调运行的最佳规则。为了确定运行规则,通过水库运行模型模拟容量,并在以下三种情况下分别进行评估:(1)大坝单独运行时; (二)与其他水坝配合使用的; (3)水坝和堰的结合使用。在案例3中,Nakdong的供水能力最高。考虑到运营损失(案例2和案例3中分别为9.1和14.8%),供水量减少了。研究结果表明,当水位降至目标以下时,水文设施应灵活调整系统中每个大坝的储水量和流量。需要进行进一步的研究,以调查农业水库和河道排放流量的影响,并确定易受水资源短缺影响的地区,这些地区是由于气候变化导致的未来水资源波动而导致的。 (C)2017年美国土木工程师学会。

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