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A probabilistic modeling framework for assessing the impacts of large reservoirs on river thermal regimes - A case of the Yangtze River

机译:一种概率建模框架,用于评估大型水库对河流热制度的影响 - 以长江为例

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摘要

Hydrological and thermal river regimes have changed greatly due to the construction of reservoirs and dams. Water temperature changes have important significance for aquatic habitats and freshwater ecosystems. To investigate the impact of large reservoirs on the water temperature regime along the middle reach of the Yangtze River, we present a probabilistic modeling framework to ascertain the joint dependence structures of air-water temperature and discharge-water temperature between pre-reservoir and post-reservoir periods based on the copula theory. The results show that the principle of maximum entropy (POME) method can better estimate the marginal distributions of temperature regimes. Reservoir operation disturbed the dependence structures of air-water temperature, especially after the Three Gorges Reservoir (TGR) was put into operation. Different shifts in the occurrence probabilities of high or low water temperatures at the downstream and upstream stations under extreme air temperature and discharge are observed, indicating the great effects of reservoirs on the dependence structures of the downstream river flow and thermal regime. Relying on the developed model, we propose the appropriate ranges of air temperature and discharge to maintain a suitable water temperature for Chinese sturgeon (Acipenser sinensis) spawning activity. The results of this study demonstrate the influence of dams on the thermal regime and can be helpful for optimizing reservoir operations to enhance biological conservation in the Yangtze River.
机译:由于储层和水坝的建造,水文和热河制度已经大大变化。水温变化对水生栖息地和淡水生态系统具有重要意义。为了调查大型水库对长江中途水中的水温制度的影响,我们提出了一个概率的建模框架,以确定预储层和后的空气水温和排出水温的关节依赖结构。基于Copula理论的储层期。结果表明,最大熵(Pome)方法的原理可以更好地估计温度制度的边际分布。储层操作扰乱了空气温度的依赖结构,特别是在三峡库(TGR)投入运行后。观察到在极端空气温度和放电下的下游和上游站的高或低水温的发生概率的不同变化,表明储层对下游河流和热方案的依赖结构的巨大影响。依靠开发的模型,我们提出了适当的空气温度和放电范围,以保持适当的中国鲟鱼(Acipenser Sinensis)产卵活性的水温。本研究的结果表明了大坝对热制度的影响,并且有助于优化储层运营,以提高长江生物保护。

著录项

  • 来源
    《Environmental research》 |2020年第4期|109221.1-109221.14|共14页
  • 作者单位

    Key Laboratory of Surficial Geochemistry Ministry of Education Department of Hydrosciences School of Earth Sciences and Engineering State Key Laboratory of Pollution Control and Resource Reuse Nanjing University Nanjing PR China;

    Key Laboratory of Surficial Geochemistry Ministry of Education Department of Hydrosciences School of Earth Sciences and Engineering State Key Laboratory of Pollution Control and Resource Reuse Nanjing University Nanjing PR China;

    Key Laboratory of Surficial Geochemistry Ministry of Education Department of Hydrosciences School of Earth Sciences and Engineering State Key Laboratory of Pollution Control and Resource Reuse Nanjing University Nanjing PR China;

    Key Laboratory of Surficial Geochemistry Ministry of Education Department of Hydrosciences School of Earth Sciences and Engineering State Key Laboratory of Pollution Control and Resource Reuse Nanjing University Nanjing PR China;

    Key Laboratory of Surficial Geochemistry Ministry of Education Department of Hydrosciences School of Earth Sciences and Engineering State Key Laboratory of Pollution Control and Resource Reuse Nanjing University Nanjing PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water temperature; Probabilistic modeling; Three gorges reservoir; Yangtze river;

    机译:水温;概率造型;三峡库;扬子江;

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