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A vertically integrated eutrophication model and its application to a river-style reservoir-Fuchunjiang,China 被引量:6
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作者 WU Tingfeng LUOLiancong +3 位作者 QIN Boqiang cui guangbai YUZuoming YAO Zhiming 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2009年第3期319-327,共9页
Based on a 2-D hydrodynamic model, a vertically integrated eutrophication model was developed. The physical sub-model can be used for calculation of water density at different depths, and the water quality sub-model w... Based on a 2-D hydrodynamic model, a vertically integrated eutrophication model was developed. The physical sub-model can be used for calculation of water density at different depths, and the water quality sub-model was used for calculation of algal growth. The cohesive and non-cohesive sediments were simulated separately with different methods. The light extinction coefficient used in the underwater light regime sub-model was linearly related to the sum of sediment and phytoplankton biomass. Some components less important to the model were simplified to improve practicability and calculation efficiency. Using field data from Fuchunjiang Reservoir, we calculated the sensitivity of ecological parameters included in this model and validated the model. The results of sensitivity analysis showed that the parameters strongly influenced the phytoplankton biomass, including phytoplankton maximum growth rate, respiration rate, non-predatory mortality rate, settling rate, zooplankton maximum filtration rate, specific extinction coefficient for suspended solids and sediment oxygen demand rate. The model was calibrated by adjusting these parameters. Total chlorophyll α (chl-α) concentrations at different layers in the water column were reproduced very well by the model simulations. The simulated chl-α values were positively correlated to the measured values with Pearson correlation coefficient of 0.92. The mean difference between measured and simulated chl-α concentrations was 12% of the measured chl-α concentration. Measured and simulated DO concentrations were also positively correlated (r = 0.74) and the mean difference was 4% of measured DO concentrations. The successful validation of model indicated that it would be very useful in water quality management and algal bloom prediction in Fuchunjiang Reservoir and a good tool for water quality regulation of other fiver-style reservoirs. 展开更多
关键词 fiver-style RESERVOIR EUTROPHICATION numerical model Fuchunjiang Reservoir
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平原河网区水系连通改善水环境效果评估 被引量:88
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作者 崔广柏 陈星 +2 位作者 向龙 张其成 许钦 《水利学报》 EI CSCD 北大核心 2017年第12期1429-1437,共9页
河流水系是城市重要的资源和环境载体,经济社会快速发展的同时,城市发展与水环境保护之间的矛盾日益突出,尤其是平原河网地区,由于地貌条件制约,城市河道水环境改善难度大。城市水系的可持续发展将直接关系到城市乃至整个社会的健康发展... 河流水系是城市重要的资源和环境载体,经济社会快速发展的同时,城市发展与水环境保护之间的矛盾日益突出,尤其是平原河网地区,由于地貌条件制约,城市河道水环境改善难度大。城市水系的可持续发展将直接关系到城市乃至整个社会的健康发展,贯彻现代水系治理思路,通过水系连通促进水环境的改善成为城市治水的重要一环。论文选择常熟市城区作为研究区,以引水实验与水量水质模型作为技术支撑,找出水系连通改善水环境的关键问题,基于此整合水系结构连通性与水力连通性概念,提出水系连通度评价方法。引水实验成果表明,骨干河道水流交换通畅,重要河道水质在引水实验中改善率平均在20%~30%,但主城区河道存在连通受阻。河道连通性的提升与水利工程的合理调度对于以水环境改善为目标的连通体系有着重要影响,以本文两个连通情景为例,河道的整治使得结构连通性增强,河道水质平均改善率提升至30%~50%。从连通性指数的变化来看,结构性连通的提升提高了调水效率,极大地促进了水力连通与水质改善。论文建立的水系连通改善水环境的方法体系能够为水系连通决策提供理论依据,对我国城市水系连通实践提供参考。 展开更多
关键词 水系连通 常熟城区 水环境改善 引水实验
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