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Sensitivity analysis of non-point sources in a water quality model applied to a dammed low-flow-reach river

机译:水质模型在堤坝低流量到达河中非点源敏感性分析

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Downstream of Capim Branco I hydroelectric dam (Minas Gerais state, Brazil), there is the need of keeping a minimum flow of 7 m(3)/s. This low flow reach (LFR) has a length of 9 km. In order to raise the water level in the low flow reach, the construction of intermediate dikes along the river bed was decided. The LFR has a tributary that receives the discharge of treated wastewater. As part of this study, water quality of the low-flow reach was modelled, in order to gain insight into its possible behaviour under different scenarios (without and with intermediate dikes). QUAL2E equations were implemented in FORTRAN code. The model takes into account point-source pollution and diffuse pollution. Uncertainty analysis was performed, presenting probabilistic results and allowing identification of the more important coefficients in the LFR water-quality model. The simulated results indicate, in general, very good conditions for most of the water quality parameters The variables of more influence found in the sensitivity analysis were the conversion coefficients (without and with dikes), the initial conditions in the reach (without dikes), the non-point incremental contributions (without dikes) and the hydraulic characteristics of the reach (with dikes).
机译:Capim Branco I水电站大坝(巴西米纳斯吉拉斯州)下游,需要保持最小流量为7 m(3)/ s。低流量范围(LFR)的长度为9 km。为了提高低流量河段的水位,决定沿河床修建中间堤防。 LFR的支流接收处理后的废水。作为这项研究的一部分,对低流量河段的水质进行了建模,以深入了解其在不同情况下(无堤坝和中堤坝)的可能行为。 QUAL2E方程以FORTRAN代码实现。该模型考虑了点源污染和扩散污染。进行了不确定性分析,给出了概率结果,并允许确定LFR水质模型中更重要的系数。模拟结果总体上显示了大多数水质参数的良好条件。在敏感性分析中发现影响更大的变量是转换系数(不带堤坝),河段的初始条件(不带堤坝),非点增量贡献(无堤防)和作用范围的水力特性(有堤防)。

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