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Risk assessment methodology for iron stability under water quality factors based on fuzzy comprehensive evaluation

机译:基于模糊综合评判的水质因素下铁稳定性风险评估方法

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Changing water quality was prevalent in the current water supply. The fluctuation of iron stability due to changing water quality followed four characteristics: objectivity, relativity, predictability, and controllability. Therefore, it was necessary to study the stability of iron in the pipe network by integrating different water quality factors. The iron stability risk evaluation system was established according to the different water quality factors in the drinking water distribution systems (DWDSs). Meanwhile, an improved fuzzy comprehensive evaluation method was established to evaluate the risk of iron. Chloride, sulfate, dissolved organic matter (DOM) and pH were selected as the risk assessment index. The divisions of different evaluation levels were carried out through the values of water quality factor. On the basis of expert scoring, the weight and membership degree of water quality factors were analyzed by structural entropy method. In addition, risk analysis was established by using the optimized risk assessment system. According to the results of the comprehensive evaluation, DOM and pH were identified as two of the most important factors in the evaluation of the iron stability. In addition, compared with the traditional fuzzy comprehensive evaluation method, the optimized method had a higher degree of fit which could more clearly prove the relationship between the risk value and the iron concentration. The uncertainty between the factors was eliminated by establishment of the fuzzy evaluation method combined with the different effects of water factors on iron stability. The method could be used as a comprehensive evaluation and be beneficial to the analysis of iron risk in water supply network.
机译:当前供水中,改变水质普遍存在。由于水质不断变化的铁稳定性波动,遵循四种特征:客观性,相对性,可控性和可控性。因此,必须通过整合不同的水质因素研究管网中铁的稳定性。铁稳定性风险评估系统是根据饮用水分配系统(DWDS)的不同水质因素建立的。同时,建立了一种改进的模糊综合评价方法,以评估铁的风险。选择氯化物,硫酸盐,溶解有机物(DOM)和pH作为风险评估指数。通过水质因素的价值进行不同评价水平的分歧。在专家评分的基础上,通过结构熵方法分析了水质因素的体重和隶属度。此外,通过使用优化的风险评估系统建立了风险分析。根据综合评价的结果,DOM和pH值被确定为铁稳定性评估中最重要的因素。此外,与传统的模糊综合评价方法相比,优化方法具有更高程度的合适,可以更清楚地证明风险值与铁浓度之间的关系。通过建立模糊评价方法消除了因素之间的不确定性与水因子对铁稳定性的不同影响。该方法可用作综合评估,并有利于供水网络中的铁风险分析。

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