Non-Revenue Water: Financial Model for Optimal Management in Developing Countries

Author:

Wyatt Alan

Abstract

Non-revenue water (NRW) includes physical losses (pipe leaks) and commercial losses (illegal connections, unmetered public use, meter error, unbilled metered water, and water for which payment is not collected). NRW levels are high in many developing countries, and they can be expensive to reduce. Members of the International Water Association (IWA) Water Loss Task Force developed the Economic Level of Leakage (ELL), which outlines the optimal level of physical losses based on engineering inputs. However, the ELL approach is less useful in developing countries than in developed countries, as it ignores commercial losses, the annualized cost of water supply capacity expansion, and situations in which production capacity does not meet demand. This report presents a financial model that addresses the limitations noted above and provides acceptably accurate values of optimal, steady-state NRW without the need for large data collection efforts. The model uses an NRW framework adapted from the IWA Water Balance and the Burst and Background Estimates (BABE) and Econoleak methodologies. The report presents specific results for 59 utilities in 27 countries in Asia, Africa, and Eastern Europe; these include optimal NRW, optimal physical losses, optimal commercial losses, optimal meter replacement frequencies, optimal leak detection survey frequencies, actual losses, and impacts on utility revenue and water supply coverage. This model allows utility managers and regulators to establish NRW targets and to optimally allocate resources to NRW management. Ultimately, use of the model will help save water, increase utility revenues, expand coverage, and reduce health and economic impacts.

Publisher

RTI Press

Reference42 articles.

1. Africa Infrastructure Country Diagnostic (2009). Africa's infrastructure. [Database]. Retrieved April 5, 2010, from www.infrastructureafrica.org/aicd/tools/data

2. Day, G. (Ofwat, UK) (2010, January). Leakage now and in the future. Paper presented at the 4th Global Water Leakage Summit. London, England.

3. Dellow, D. (Northumbrian Water, UK) (2010, January). Building a leakage-driven infrastructure renewal programme, Essex and Suffolk Water. Paper presented at the 4th Global Water Leakage Summit. London, England.

4. A simple economic model for the selection of the optimum method of leakage control;DiMichele;Water International Vol,1988

5. Fanner, P., & Lambert, A. O. (2009). Calculating SRELL with pressure management, active leakage control and leak run-time options, with confidence limits. Proceedings of 5th IWA Water Loss Reduction Specialist Conference (pp. 373-380). Cape Town, South Africa: IWA/Specialist Group Efficient Operation and Management.

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