余氯模型开发

M. Bello, M. H. Bichi
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引用次数: 0

摘要

本研究旨在建立节点余氯衰变的数学模型,并与Epanet 2.0的结果进行比较。所有影响初始氯的参数Ccl(init(o))、体积衰变(Kb)、壁衰变(KW)和行程时间(t)都得到了很好的表示,并应用一阶氯衰变模型的微分形式建立了方程,描述了在体积流体和管壁发生的反应,将其转化为基于氯浓度的积分表达式Ccl(t) =Ccl (o)。e-kt为时刻(t)的游离氯(HOCL)浓度(mg/l)。也叫余氯。是时刻0的氯浓度,它是整个配水系统的初始氯浓度。KW为受初始浓度直接影响的特定配水管网的管壁衰减系数。K在本研究中表示为每小时任意特定节点上每单位小时(t=1)由于水质引起的衰减,称为体积衰减系数(kb)。他所建立的数学模型反映了研究区域的实际情况Rcl (n)=Ccl (init)。KW. sql - kb。模型在节点31、12、13、14、18、10、17、15、20和21的结果分别为0.18 mg/l、0.19mg/l、0.19mg/l、0.19mg/l、0.20 mg/l、0.19mg/l。同一节点的Epanet 2.0结果分别为0.17 mg/l、0.21 mg/l、0.22 mg/l、0.20 mg/l、0.21 mg/l、0.25 mg/l、0.24 mg/l、0.20 mg/l、0.18 mg/l。建立的数学模型余氯结果与Epanet 2.0结果的相关性为0.561,相关性为60%,双尾显著性水平为0.01,为99%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model Development for Residual Chlorine
The research is to develop a mathematical model for the decay of residual chlorine at the nodes and compare with results from Epanet 2.0. All the influencing parameters of initial chlorine Ccl(init(o)), bulk decay (Kb), wall decay (KW) and travel time (t), were well represented and the equation is developed applying the differential form of the first order chlorine decay model, describing reactions occurring in the bulk fluid and at the pipe wall, which was transformed in to chlorine concentration-based integral expression Ccl (t) =Ccl (o).e-kt ,  is the free chlorine (HOCL) concentration (mg/l) at time (t), which is also called the residual chlorine. is the chlorine concentration at time zero, which is the initial chlorine concentration in the entire water distribution systems. KW is the pipe wall decay coefficient of the particular water distribution pipe network directly affected by initial concentration. K is expressed in the study as the decay due to the quality of water, known as bulk decay coefficient (kb), per unit hour (t=1) at any particular node per hour. he developed mathematical model was a reflection of the reality in the study area Rcl (n)=Ccl (init). KW. е-Kb . The results of the model at nodes 31, 12, 13, 14, 18, 10, 17, 15, 20 and 21 are 0.18 mg/l, 0.19 mg/l, 0.19 mg/l, 0.19 mg/l, 0.19 mg/l, 0.19 mg/l, 0.20 mg/l, 0.19 mg/l, 0.20 mg/l, 0.19mg/l, respectively. Epanet 2.0 results for the same nodes were determine to be 0.17 mg/l, 0.21 mg/l, 0.22 mg/l, 0.20 mg/l, 0.21 mg/l, 0.21 mg/l, 0.25 mg/l, 0.24 mg/l, 0.20 mg/l, 0.20 mg/l, 0.18 mg/l. The correlation between the developed mathematical model residual chlorine results and Epanet 2.0 results gives moderate correlation of 0.561, signifying 60% pearson correlation and 0.01, 2-tailed significance level at 99%.
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