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首页> 外文期刊>Computational Water, Energy, and Environmental Engineering >Application of Water Quality Model QUAL2K to Model the Dispersion of Pollutants in River Ndarugu, Kenya
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Application of Water Quality Model QUAL2K to Model the Dispersion of Pollutants in River Ndarugu, Kenya

机译:水质模型QUAL2K在模拟肯尼亚Ndarugu河中污染物扩散中的应用

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Ndarugu River, Kenya, during its course through the different agricultural and industrial areas of Gatundu, Gachororo and Juja farms, receives untreated industrial, domestic and agricultural waste of point source discharges from coffee and tea factories. During wet season the water is also polluted by non-point (diffuse) sources created by runoff carrying soil, fertilizer and pesticide residues from the catchment area. This study involved the calibration of water quality model QUAL2K to predict the water quality of this segment of the river. The model was calibrated and validated for flow discharge (Q), temperature (T°), flow velocity (V), biochemical oxygen demand (BOD5), dissolved oxygen (DO) and nitrate (NO3-N), using data collected and analyzed during field and laboratory measurements done in July and November-December 2013. The model was then used in simulation and its performance was evaluated using statistical criteria based on correlation coefficient (R2) and standard errors (SE) between the observed and simulated data. The model reflected the field data quite well with minor exceptions. In spite of these minor differences between the measured and simulated data set at some points, the calibration and validation results are acceptable especially for developing countries where the financial resources for frequent monitoring works and higher accuracy data analysis are very limited. The water is being polluted by the human activities in the catchment. There is need for proper control of wastewater by various techniques, and preliminary treatment of waste discharges prior to effluent disposal. Management of the watershed is necessary so as to protect the river from the adverse impacts of agricultural activities and save it from further deterioration.
机译:肯尼亚的Ndarugu河沿加通都,加乔罗罗和Juja农场等不同农业和工业区的过程中,从咖啡和茶厂接收未经处理的工业,家庭和农业废物,直接排放点源。在雨季,由于径流携带来自集水区的土壤,肥料和农药残留物,这些非定点(扩散)源也污染了水。这项研究涉及对水质模型QUAL2K的校准,以预测这部分河段的水质。使用收集和分析的数据对模型进行校准并验证其流量(Q),温度(T°),流速(V),生化需氧量(BOD5),溶解氧(DO)和硝酸盐(NO3-N)在2013年7月和11月至12月进行的现场和实验室测量期间,该模型随后用于仿真,并根据观察数据和仿真数据之间的相关系数(R2)和标准误差(SE),使用统计标准对模型进行了性能评估。该模型很好地反映了现场数据,只有少数例外。尽管在某些点上测量和模拟数据集之间存在细微差异,但校准和验证结果仍然可以接受,特别是对于经常进行监测工作和进行高精度数据分析的资金非常有限的发展中国家。集水区的人类活动污染了水。需要通过各种技术对废水进行适当控制,并在废水处理之前对废水排放物进行初步处理。必须对流域进行管理,以保护河流免受农业活动的不利影响,并使河流免于进一步恶化。

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