Identifying sources of infiltration and inflow in sanitary sewers in a northern community

comparative assessment of selected methods

Journal Article (2022)
Author(s)

Oleksandr Panasiuk (Luleå University of Technology)

Annelie Hedström (Luleå University of Technology)

J.G. Langeveld (TU Delft - Sanitary Engineering, Partners4UrbanWater)

Maria Viklander (Luleå University of Technology)

Research Group
Sanitary Engineering
Copyright
© 2022 Oleksandr Panasiuk, Annelie Hedström, J.G. Langeveld, Maria Viklander
DOI related publication
https://doi.org/10.2166/wst.2022.151
More Info
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Publication Year
2022
Language
English
Copyright
© 2022 Oleksandr Panasiuk, Annelie Hedström, J.G. Langeveld, Maria Viklander
Research Group
Sanitary Engineering
Issue number
1
Volume number
86
Pages (from-to)
1-16
Reuse Rights

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Abstract

Infiltration and inflow (I/I) into sanitary sewers causes numerous negative effects on the whole wastewater management system and ultimately, on the receiving waters. Consequently, a number of methods have been developed to analyse the performance of sewer systems with respect to I/I, including: distributed temperature sensing (DTS), closed-circuit television (CCTV) inspections, flow and conductivity measurements, automatic or grab sampling of ammonium, smoke testing, and visual inspection of manholes. Such methods were compared in an application to sanitary sewers in a small community and assessed with respect to their accuracy and ability to identify locations of sources of I/I, as well as temporal and spatial resolutions of the obtained results. Furthermore, different approaches to ammonium sampling during I/I monitoring campaigns were discussed. It was concluded that among the methods tested in this study, DTS had the highest temporal and spatial resolution, while ammonium grab sampling showed promise for initial screening of large catchments.