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Updated: Oct 31, 2025

Vegetated Treatment Systems for Removing Contaminants Associated with Surface Water Toxicity in Agriculture and Urban Runoff
Published on: May 15, 2017
Intensifying rehabilitation of combined sewer systems using trenchless technology in combination with low impact
J Kvitsjøen1, K H Paus2, J T Bjerkholt3
1Faculty of Science and Technology, Norwegian University of Life Sciences, 1430 Ås, Norway E-mail: julia.kvitsjoen@vav.oslo.kommune.no; The Agency for Water and Wastewater, City of Oslo, Herslebs gate 5, 0561 Oslo, Norway.
Abstract:
Throughout Europe, there is a considerable need for investment in the upgrade of sewer systems - due to three main factors: ageing infrastructure, climate change and urban population growth. The need for investments is expected to grow significantly in the years ahead. Trenchless rehabilitation (no-dig) of sewer pipelines is a cost-efficient and environmental friendly method for upgrading existing pipelines with sufficient capacity. This study examines the possibility of applying no-dig to combined sewer systems (CS) with insufficient capacity. In this study, a concept assessment methodology that combines the analytical approaches from stormwater and sewer system assessments is presented. The methodology was tested on a case area that was part of an environmental project in Oslo, Norway. Three alternative concepts were examined; A0: no-dig and low impact development (LID), A1: no-dig, LID and green infrastructure (GI), and A2: CS up-sizing using open-cut methods. The study concludes that CS with insufficient capacity can be rehabilitated using no-dig if LID and GI. The combination of no-dig and LID reduces costs considerably but does involve the risk of damages from uncontrolled surface runoff. The main risk-reduction measure is the development of GI as an integrated stormwater management system that requires cross-sector collaboration within municipalities.
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