Spatial diversity of chlorine residual in a drinking water distribution system: application of an integrated fuzzy logic technique

Author:

Termini Donatella1,Viviani Gaspare1

Affiliation:

1. Dipartimento di Ingegneria Civile, Ambientale, Aerospaziale, dei Materiali (DICAM), University of Palermo, Palermo 90128, Italy

Abstract

A reduction in the concentration of chlorine, which is used as a chemical disinfectant for water in drinking water distribution systems, can be considered to be an index of the progressive deterioration of water quality. In this work, attention is given to the spatial distribution of the residual chlorine in drinking water distribution systems. The criterion for grouping the water-quality parameters normally used is highly subjective and often based on data that are not correctly identified. In this paper, a cluster analysis based on fuzzy logic is applied. The advantage of the proposed procedure is that it allows a user to identify (in an automatic way and without any specific assumption) the zonation of the network and easily calibrate the unknown parameters. An analysis of the correlation between the sampling sites for the residual chlorine has been used to assess the applicability of the procedure.

Publisher

IWA Publishing

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering,Water Science and Technology

Reference46 articles.

1. A FEM approach to water balance and quality parameters identification, towards real time networks monitoring;Aubry,2011

2. A clustering technique for the parameter estimation in flow pipe network models;Bascià,1999

3. A model for chlorine concentration decay in pipes;Biswas;Water Research,1993

4. Chlorine decay in water distribution system, case study – Lousada network;Castro;Electronic Journal of Environment, Agricultural and Food Chemistry,2003

5. Measuring and modeling variations in distribution system water quality;Clark;Journal of the American Water Works Association,1990

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