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Assessing the impact of working pressure on water meter registration
Author(s) -
Isaac G. Musaazi,
Jotham Ivan Sempewo,
M. Niranjan Babu,
Nicholas Kiggundu
Publication year - 2021
Publication title -
journal of water supply research and technology—aqua
Language(s) - English
Resource type - Journals
eISSN - 1365-2087
pISSN - 0003-7214
DOI - 10.2166/aqua.2021.123
Subject(s) - metering mode , metre , volume (thermodynamics) , environmental science , pressure sensor , hydrology (agriculture) , engineering , mechanical engineering , geotechnical engineering , physics , quantum mechanics , astronomy
Fluctuations in the network pressure of water supply systems affect hydraulic performance and water meter accuracy. The development of metering error curves requires steady-state conditions which are extremely rare in water distribution systems characterized by intermittent supply. Simple deterministic models are suggested and developed from monthly data collected over a 4-year period (2010–2014) for three most dominant meter models (Models 1–3) in the Kampala Water Distribution System (KWDS), Uganda. This study combines pressure and billing information at the same time to understand metering accuracy. Results showed that metering accuracy increased by 4.2% for Model 1, 8.4% for Model 2 and 2.9% for Model 3, when the pressure was increased from 10 to 50 meters head. Age did not influence the impact of pressure on meter accuracy. The most sensitive parameter in the model was the meter age. Metering accuracy was relatively constant after a period of 5 years. The least sensitive parameter was the working pressure which caused a slight change to the annual billed volume. The ability of the model to accurately predict the meter registration degenerated with an increasing annual billed volume. Model 2 meters were the best performing and probably the most suitable meters in the KWDS.

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