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Dynamic water quality modelling and uncertainty analysis of phytoplankton and nutrient cycles for the upper South Saskatchewan River

机译:南萨斯喀彻温河上游的动态水质建模和浮游植物和养分循环的不确定性分析

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The surface water quality of the upper South Saskatchewan River was modelled using Water Quality Analysis Simulation Program (WASP) 7.52. Model calibration and validation were based on samples taken from four long-term water quality stations during the period 2007-2009. Parametric sensitivities in winter and summer were examined using root mean square error (RMSE) and relative entropy. The calibration and validation results show good agreement between model prediction and observed data. The two sensitivity methods confirmed pronounced parametric sensitivity to model state variables in summer compared to winter. Of the 24 parameters examined, dissolved oxygen (DO) and ammonia (NH3-N) are the most influenced variables in summer. Instream kinetic processes including nitrification, nutrient uptake by algae and algae respiration induce a higher sensitivity on DO in summer than in winter. Moreover, in summer, soluble reactive phosphorus (SRP) and chlorophyll-a (Chla) variables are more sensitive to algal processes (nutrient uptake and algae death). In winter however, there exists some degree of sensitivity of algal processes (algae respiration and nutrient uptake) to DO and NH3-N. Results of this study provide information on the state of the river water quality which impacts Lake Diefenbaker and the need for additional continuous monitoring in the river. The results of the sensitivity analysis also provide guidance on most sensitive parameters and kinetic processes that affect eutrophication for preliminary surface water quality modelling studies in cold regions.
机译:使用水质分析模拟程序(WASP)7.52对南萨斯喀彻温河上游的地表水水质进行建模。模型校准和验证基于2007-2009年期间从四个长期水质站采集的样本。使用均方根误差(RMSE)和相对熵检查了冬季和夏季的参数敏感性。校准和验证结果表明模型预测和观察到的数据之间具有良好的一致性。两种敏感性方法证实了夏季与冬季相比,模型状态变量具有明显的参数敏感性。在检查的24个参数中,夏季溶解氧(DO)和氨(NH3-N)的影响最大。在夏季,与冬季相比,包括硝化作用,藻类吸收养分和藻类呼吸在内的入流动力学过程对DO的敏感性更高。此外,在夏季,可溶性反应性磷(SRP)和叶绿素-a(Chla)变量对藻类过程(营养吸收和藻类死亡)更敏感。但是,在冬季,藻类过程(藻类呼吸和养分吸收)对DO和NH3-N有一定程度的敏感性。这项研究的结果提供了有关影响迪芬贝克湖的河流水质状况以及对河流进行额外连续监测的需求的信息。敏感性分析的结果还为影响富营养化的最敏感参数和动力学过程提供了指导,用于寒冷地区的初步地表水水质建模研究。

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