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Numerical simulation of water age and its potential effects on the water quality in Xiangxi Bay of Three Gorges Reservoir

机译:三峡库区湘西湾水中时代数值模拟及其对水质的潜在影响

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摘要

After the impoundment of Three Gorges Reservoir, algal blooms frequently occurred in the tributaries of the reservoir, which has posed a great challenge for the local aquatic environment and ecology. To investigate the main causes and key factors of the algal blooms, the Environmental Fluid Dynamics Code (EFDC) model is applied to the simulation of the three-dimensional hydrodynamics and water quality in the Yangtze River and Xiangxi Bay, and the concept of water age is adopted to quantitatively analyze the effects of hydrodynamics on the water quality by linking water age and phytoplankton levels, which has seldom been explored in previous studies. The model results show good agreement with the field data, and the simulation reproduces the thermal stratification and density current in Xiangxi Bay. The results show that Xiangxi Bay exhibits quite complicated hydrodynamic characteristics, and could be divided into different zones according to the transport process. In the upper reach, the water quality is mainly affected by the upstream inflows, while it is mainly affected by the intrusion flow from the mainstream near the river mouth. Water age and water temperature are found to be the key factors influencing the algal blooms in Xiangxi Bay. Besides, a significant positive correlation has been found between the chlorophyll a (chl-a) concentration in the surface layer and the water age of the dominant water source. This conclusion can be adopted to interpret the longitudinal distribution of chl-a concentration and to explain why Xiangxi Bay is susceptible to algal blooms. The correlation between water age and chl-a concentration is further used to evaluate the effectiveness of water level fluctuation in preventing algal blooms. The analyses and findings in this study could help to better understand the complicated hydrodynamic and water quality processes in Xiangxi Bay following the impoundment, and provide insights into ecological and environmental management of Three Gorges Reservoir.
机译:在三峡库区蓄积之后,藻类盛开经常发生在水库的支流中,这对当地水生环境和生态构成了巨大的挑战。为了研究藻类盛开的主要原因和关键因素,环境流体动力学代码(EFDC)模型应用于长江和湘西湾的三维流体动力学和水质的模型,以及水时代的概念通过链接水时期和浮游植物水平来定量分析流体动力学对水质的影响,并在以前的研究中已经很少探讨。模型结果与现场数据吻合良好,模拟再现了湘西湾的热分层和密度电流。结果表明,湘西湾表现出相当复杂的流体动力学特性,可根据运输过程分成不同的区域。在上游,水质主要受上游流入影响,而它主要受到河口附近主流的入侵流动的影响。发现水时期和水温是影响湘西湾藻类盛开的关键因素。此外,在表面层中的叶绿素A(CHL-A)浓度和优势水源的水时期之间已经发现了显着的正相关性。可以采用这一结论来解释CHL-A浓度的纵向分布,并解释为什么湘西海湾易受藻类盛开的影响。水时期和CHL-A浓度之间的相关性进一步用于评估水位波动在防止藻类中的有效性。本研究中的分析和调查结果可以帮助更好地了解蓄水湾之后的湘西湾的复杂的流体动力和水质流程,并为三峡库区的生态和环境管理提供见解。

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