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Analysis of numerical simulations and influencing factors of seasonal manganese pollution in reservoirs

机译:水库中季节性锰污染的数值模拟及其影响因素分析

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Seasonal manganese pollution has become an increasingly pressing water quality issue for water supply reservoirs in recent years. Manganese is a redox-sensitive element and is released from sediment under anoxic conditions near the sediment-water interface during summer and autumn, when water temperature stratification occurs. The reservoir water temperature and water dynamic conditions directly influence the formation of manganese pollution. Numerical models are useful tools to quantitatively evaluate manganese pollution and its influencing factors. This paper presents a reservoir manganese pollution model by adding a manganese biogeochemical module to a water quality model-CE-QUAL-W2. The model is applied to the Wangjuan reservoir (Qingdao, China), which experiences manganese pollution during summer and autumn. Field data are used to verify the model, and the results show that the model can reproduce the main features of the thermal stratification and manganese distribution. The model is used to evaluate the manganese pollution process and its four influencing factors, including air temperature, water level, wind speed, and wind directions, through different simulation scenarios. The results show that all four factors can influence manganese pollution. High air temperature, high water level, and low wind speed aggravate manganese pollution, while low air temperature, low water level, and high wind speed reduce manganese pollution. Wind that travels in the opposite direction of the flow aggravates manganese pollution, while wind in the same direction as the flow reduces manganese pollution. This study provides useful information to improve our understanding of seasonal manganese pollution in reservoirs, which is important for reservoir manganese pollution warnings and control.
机译:近年来,季节性锰污染已成为供水水库日益紧迫的水质问题。锰是一种对氧化还原敏感的元素,在夏季和秋季(发生水温分层)时,在缺水条件下靠近沉积物-水界面时会从沉积物中释放出锰。水库水温和水动力学条件直接影响锰污染的形成。数值模型是定量评估锰污染及其影响因素的有用工具。通过在水质模型CE-QUAL-W2中添加锰生物地球化学模块,提出了储层锰污染模型。该模型被应用到了在夏季和秋季遭受锰污染的王娟水库(中国青岛)。现场数据验证了该模型,结果表明该模型能够再现热分层和锰分布的主要特征。该模型用于通过不同的模拟场景评估锰污染过程及其四个影响因素,包括空气温度,水位,风速和风向。结果表明,所有四个因素均可影响锰的污染。较高的空气温度,较高的水位和较低的风速会加剧锰污染,而较低的空气温度,较低的水位和较高风速会降低锰污染。沿与气流相反的方向传播的风会加剧锰污染,而与气流相同方向的风会降低锰污染。这项研究提供了有用的信息,以增进我们对水库中季节性锰污染的了解,这对于水库锰污染的预警和控制很重要。

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