Xi'an University of Technology, State Key Laboratory of Eco-hydraulics in Northwest Arid Region, Xi'an, 710048, China.
Xi'an University of Technology, State Key Laboratory of Eco-hydraulics in Northwest Arid Region, Xi'an, 710048, China.
J Environ Manage. 2020 May 15;262:110339. doi: 10.1016/j.jenvman.2020.110339. Epub 2020 Mar 4.
Water temperature is an important factor that affects the number and variety of river species. After a reservoir is built, a river's thermal regime changes significantly. Analyzing and evaluating river water temperature variation trends caused by damming can provide scientific support for developing effective water management strategies for reservoirs. This paper aimed to construct an index system of water temperatures in high and cold areas of the Upper Yellow River, and a method was proposed for identifying river water temperature variation based on principal component analysis (PCA). The variation degree in the river water temperature caused by large reservoirs was analyzed quantitatively. A three-dimensional water temperature model was developed to simulate the effect of a stratified intake on the alleviation of low-temperature water. The results indicated that (1) the water temperature decreased in summer and increased in winter, seasonal temperature changes decreased, there was a time delay in water temperature processes and a time fluctuation in the temperature threshold. (2) Certain indices were obtained that considered fish spawning and breeding, thermal condition changes and interactions between the organisms influenced by the reservoirs. (3) A stratified intake has a good effect on mitigating the impact of low water temperatures on fish spawning to some extent. The index system of the water temperature and its gradient changes effectively analyzed the influence of the reservoirs on river water temperature variations.
水温是影响河流物种数量和种类的重要因素。水库建成后,河流的热状况会发生显著变化。分析和评估大坝导致的河流水温变化趋势,可以为水库有效水资源管理策略的制定提供科学依据。本文旨在构建黄河上游高寒地区的水温指标体系,并提出基于主成分分析(PCA)的河流水温变化识别方法,定量分析大型水库对河流水温变化的影响程度。建立三维水温模型模拟分层取水对缓解低温水的效果。结果表明:(1)夏季水温下降,冬季水温上升,季节温差减小,水温过程存在时间滞后和温度阈值波动;(2)获得了一些考虑鱼类繁殖和养殖、热条件变化以及受水库影响的生物相互作用的指标;(3)分层取水在一定程度上对缓解低温水对鱼类繁殖的影响有较好的效果。水温指标体系及其梯度变化有效地分析了水库对河流水温变化的影响。