利用动态规划技术研究塔里木河水质

L. Thenu, N. Karnaningroem
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引用次数: 3

摘要

摘要雷木河一直是索容市居民的水资源。城市的发展导致了雷木河水质的恶化。利用动态程序STELLA 9.1.3进行BOD、COD、Fe和DO的动态变化,定义了雷木河未来两年的现状(2016年)和预测条件。研究区域包括6个采样点。模拟结果表明,根据政府法规第82/2001号,BOD、COD和Fe浓度在未来两年内有增加的趋势,甚至有几个采样点的BOD和COD浓度高于水质标准。同时,有4 ~ 6个采样点的DO浓度低于限值。污染控制策略设置了三种方案:(1)采购污水处理厂(WWTP),(2)河道底泥疏浚,(3)两种方案的结合。淤泥疏浚与污水处理方案相结合可使BOD浓度降低至89.82%,COD浓度降低至87.02%,DO浓度升高至19.07%。因此,确定3方案是改善Remu河水质的最佳策略,尽管铁浓度无法控制,因为它来自大自然。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Remu River Water Quality Using Dynamic Program
AbstractRemu River has been a water resource for residents in Sorong City. Development in this city leads to water quality degradation of Remu River. Existing (2016) and prediction condition of Remu River in the next two years were defined by the behavior of BOD, COD, Fe, and DO that proceed using a dynamic program, STELLA 9.1.3. Study area involved six sampling points. Simulation results showed that BOD, COD, and Fe concentrations tend to increase in the next two years, even BOD and COD concentrations at several sampling points were higher than water quality standard, according to Government Regulation No. 82/2001. Meanwhile, DO concentration was below the limit in 4 to 6 sampling points. The pollution control strategy was conducted by setting up three scenarios: (1) procurement of Waste Water Treatment Plant (WWTP), (2) river sediment dredging, and (3) combination of both scenario. Combination of sediment dredging and procurement of WWTP scenario estimated to reduce BOD concentration to 89.82%, COD concentration to 87.02%, and increase DO concentration to 19.07%. So, the 3 scenario was determined as the best strategy to improve Remu River water quality, although Fe concentration cannot be controlled as it comes from nature.
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