首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >The Hydraulic Driving Mechanisms of Cyanobacteria Accumulation and the Effects of Flow Pattern on Ecological Restoration in Lake Dianchi Caohai
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The Hydraulic Driving Mechanisms of Cyanobacteria Accumulation and the Effects of Flow Pattern on Ecological Restoration in Lake Dianchi Caohai

机译:滇池草海蓝藻积累的水力驱动机理及流态对生态恢复的影响

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摘要

Due to rapid increases in socioeconomic development and the human population over the past few decades, the shallow lakes in China have suffered from eutrophication and poor water quality. The conditions in Lake Dianchi Caohai, which is in the northern part of Lake Dianchi, are considered the most serious. The ecological restoration of Lake Dianchi Caohai began in the late 1980s. Lake managers and the public have been puzzled by the lack of a significant response of the water quality to the flow pattern despite the tremendous investment in water quality improvements. Therefore, lake managers desperately need to understand the responses of pollutant behaviors to proposed management measures. In this paper, a depth-averaged two-dimensional hydrodynamic and water quality model based on hydrological data, measured lake bed elevation, and water quality data is developed to simulate the flow field and water quality of Lake Dianchi Caohai. This model was validated using water quality data from the Caohaizhongxin site in 2016, and a close agreement was found between the model results and observations. Wind-driven circulation in Lake Dianchi Caohai was observed in the model results, which revealed that the lake flow pattern was dominated by wind-driven circulation, while the inflow/outflow played only a subsidiary role during this period. The formation of the wind-driven current in Lake Dianchi Caohai could be roughly divided into three stages. The hydrodynamic processes connected with the distribution of chlorophyll a are evaluated and discussed to adequately understand the hydraulic mechanisms driving the accumulation of cyanobacteria. Moreover, we designed three scenarios after comparing all possible operation scenarios to analyze the contributions of each different operation scenario to the water quality improvements. The optimal ecological operation scenario which has the best impacts on the water quality, especially the reduction in Chla and NH3-N concentration, is proposed based on our comprehensive analysis. The water quality improvement and management suggestions proposed in this paper are based on lake flow patterns and make up for previous studies that did not consider the effects of hydraulic characteristics on water quality improvement in Lake Dianchi Caohai.
机译:在过去的几十年中,由于社会经济发展和人口的快速增长,中国的浅湖遭受了富营养化和水质差的困扰。滇池北部的滇池草海条件最恶劣。滇池草海的生态修复始于1980年代后期。尽管对改善水质进行了巨额投资,但对水质缺乏对流态的重大响应令湖泊管理者和公众感到困惑。因此,湖泊管理者迫切需要了解污染物行为对拟议的管理措施的响应。本文建立了一个基于水文数据,实测湖床高程和水质数据的深度平均二维水动力和水质模型,以模拟滇池草海的流场和水质。该模型已使用2016年曹海中新站点的水质数据进行了验证,并在模型结果和观测值之间找到了密切的一致性。在模型结果中观察到滇池草海的风驱动环流,这表明湖流模式主要由风驱动环流控制,而流入/流出在此期间仅起辅助作用。滇池草海的风流形成大致可分为三个阶段。与叶绿素a分布有关的流体动力学过程进行了评估和讨论,以充分了解驱动蓝细菌积累的水力机制。此外,我们在比较了所有可能的运行方案之后设计了三种方案,以分析每种不同的运行方案对水质改善的贡献。在综合分析的基础上,提出了对水质影响最大,尤其是减少Chla和NH3-N浓度的最佳生态运行方案。本文提出的水质改善和管理建议是基于湖泊水流模式的,并弥补了以前的研究,这些研究没有考虑水力特性对滇池草海水质改善的影响。

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