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One-Dimensional Pollutant Transport Modelling of Cadmium (Cd), Chromium (Cr) and Lead (Pb) in Saguling Reservoir

机译:萨姑岭水库中镉,铬,铅和铅的一维污染物迁移模型

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The existing conditions of the Saguling Reservoir are reported to have suffered severe heavy metal pollution due to the presence of wastewater inputs from various types of industries flowing into Citarum River and then accumulating in the Saguling Reservoir. From the results of calibration tests of heavy metal models on water using the Root Mean Square Error (RMSE) analysis and Relative Error (RE) analysis, obtained dispersion coefficients on Cadmium, Chromium, and Lead metals sequentially 1 m~(2)/ second (with RMSE 0,00515 and 34% relative error); 1 m~(2)/ second (with RMSE 0.00595 and relative error 26%); and 2.5 m~(2)/ second (with RMSE 0.028205 and relative error 41.25%) which shows that the model has good capability to simulate the concentration of heavy metals approaching the actual data both in the dry and wet seasons. From the results of the verification test models of concentration of cadmium, lead and chromium in sediments using the Root Mean Square Error (RMSE) analysis and Relative Error (RE) analysis, obtained sequentially 18.53 and 77%; 10.43 and 47.15%; 2.789 and 33%. Error values in sediment concentrations are quite large because of the difficulty of making assumptions that are close to natural conditions.
机译:据报道,萨古令水库的现有条件遭受了严重的重金属污染,这是由于来自各种行业的废水输入流入了奇塔鲁姆河,然后在萨古令水库中积累。根据使用均方根误差(RMSE)分析和相对误差(RE)分析的重金属模型在水上的校准测试结果,依次获得1 m〜(2)/秒的镉,铬和铅金属上的弥散系数(RMSE为0,00515,相对误差为34%); 1 m〜(2)/秒(RMSE 0.00595,相对误差26%);和2.5 m〜(2)/秒(RMSE为0.028205,相对误差为41.25%),表明该模型具有良好的模拟重金属浓度的能力,在干旱和潮湿季节都接近实际数据。根据使用均方根误差(RMSE)分析和相对误差(RE)分析的沉积物中镉,铅和铬浓度验证测试模型的结果,依次获得18.53和77%; 10.43和47.15%; 2.789和33%。由于难以进行接近自然条件的假设,因此沉积物浓度的误差值非常大。

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