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Replenishment of landscape water with reclaimed water: Optimization of supply scheme using transparency as an indicator

机译:用再生水补充景观水:以透明度为指标的供水方案优化

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With shortages of urban water resources, reclaimed water (RW) has become increasingly important as an alternative water source, especially for replenishing landscape waters. To meet the requirements of landscape quality control when RW is used for partial replacement of the surface water (SW) source to a channel-type urban water in a city in northwest China, scenario analyses were carried out by mathematical modelling. Water transparency (measured by SD) is used as an intuitive indicator to reflect the comprehensive influence of suspended solids (SS) and algae growth on the water's aesthetic quality. Findings indicate that although the significantly higher nutrient concentrations of RW might bring about higher algae growth potential, in comparison with SW, its much lower SS concentration could offset the adverse effects on SD, to a large extent. By embedding the water quality model, calibrated and validated based on a two-year measurement data into MIKE 3 software for both SD and algae growth calculation, computer simulations were carried out to assist a series of scenario analyses of RW utilization and optimization of the water supply scheme. As a result, to meet the requirement of SD 80 cm at the control section of the landscape water, the total water inflow required was not increased but decreased with the optimal application of RW. The advantages of lower SS in RW to reduce the demand inflow of total water was more evident with the higher requirement of SD. Replenishment of the channel-type urban water by RW was, thus, proven feasible from the viewpoint of landscape quality control.
机译:随着城市水资源的短缺,再生水(RW)作为替代水源变得越来越重要,尤其是在补充景观水方面。为了满足在西北地区某城市使用RW将地表水(SW)源部分替换为河道型城市水时景观质量控制的要求,通过数学建模进行了情景分析。水的透明度(由SD衡量)用作直观的指标,以反映悬浮固体(SS)和藻类生长对水的美学品质的综合影响。研究结果表明,尽管RW中较高的养分浓度可能带来更高的藻类生长潜力,但与SW相比,其低得多的SS浓度可以在很大程度上抵消对SD的不利影响。通过将基于两年测量数据进行校准和验证的水质模型嵌入到MIKE 3软件中,用于SD和藻类生长计算,进行了计算机模拟,以协助进行一系列有关RW利用和水质优化的方案分析供应方案。结果,为了满足景观水控制区SD> 80 cm的要求,在最佳使用RW的情况下,所需的总入水量没有增加,而是减少了。随着对SD的更高要求,RW中较低的SS可以减少总水需求量的优势更加明显。因此,从景观质量控制的角度来看,RW补充河道型城市水是可行的。

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