确定关键管道属性和位置,以最好地确定配水系统中的氯衰变系数

Mahnoush Maleki, Genevieve Pelletier, Manuel Rodriguez
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引用次数: 0

摘要

摘要配水系统(WDS)的特性直接影响饮用水水质。配水过程中残留消毒剂与散装水(kb)和管壁(kw)的动力学反应系数会导致水质退化。确定这些系数既昂贵又耗时。本研究的主要目的是确定最相关的管道特性和位置,以最佳地确定WDS中的氯衰变系数。本文旨在评估kb和kw值的各种情况,并将它们与全尺寸WDS中的测量数据进行比较。将最精确的方案与成本最低的方案进行比较,以确定确定这些系数所需的最有效信息,包括WDS内的位置和管柱特性(井龄、管径和材料)。结果表明,kw和kb值最高的情景与现场实测数据最吻合。此外,对于灰铸铁管道、1960年以前安装的管道以及余氯衰变的脆弱区域,确定比动力学系数更为准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identifying key pipe attributes and locations to best determine chlorine decay coefficients within a water distribution system
Abstract Water distribution system (WDS) characteristics can impact drinking water quality. Kinetic reaction coefficients of residual disinfectant associated with bulk water (kb) and pipe wall (kw) during water distribution can lead to water quality degradation. Determining these coefficients can be expensive and time-consuming. The main objective of this study is to determine the most relevant pipe characteristics and locations to best determine chlorine decay coefficients in a WDS. This article aims to evaluate various scenarios of kb and kw values and compare them to measured data in a full-scale WDS. The most accurate scenario is also compared with the lowest-cost scenario to identify the most effective information needed to determine these coefficients, in terms of location within the WDS and pipe characteristics (age, diameter, and material). Results showed that the scenario with the highest kw and kb values corresponds best to the field-measured data. Moreover, determining specific kinetic coefficients was shown to be more accurate for gray cast iron pipes, pipes installed in a period before 1960, and vulnerable zones for residual chlorine decay.
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