Hydraulic Characterization of a Check Valve for Low-Pressure Potable Water Distribution Applications

Author:

Carpintero Javier1ORCID,Martinez Brayan1,Fábregas Jonathan2ORCID,Pérez José1,Canales Fausto A.1ORCID

Affiliation:

1. Department of Civil and Environmental, Universidad de la Costa, Calle 58 #55-66, Barranquilla 080002, Colombia

2. Faculty of Engineering, Universidad Autónoma del Caribe, Barranquilla 080020, Colombia

Abstract

The potable water in residential hydraulic networks is measured using volumetric meters. However, when the water carries air bubbles or pockets through the pipes, the accuracy of the meter readings is reduced, which can negatively impact the billing that users pay for their water consumption. A check valve accessory exists that reduces the size of these air bubbles to correct the meter readings and improve the service experience. However, the device has only been tested for networks with relative pressures higher than 275.79 kPa. This research proposes to characterize the hydraulic behavior of the accessory through an experimental procedure in which the operating conditions are similar to those found in water networks in Latin America, where the networks have relative pressures lower than 275.79 kPa. The study found that the accessory significantly reduces the coefficient of loss for velocities greater than 1 m/s. The use of the device is suggested in flow regimes with Reynolds numbers close to 20,000 for operating conditions of temperatures close to 25 °C and residential pipes with an internal diameter of 20.9 mm and a flow velocity between 1.3 m/s and 1.78 m/s. This condition allows it to operate with minimal local energy loss and a low coefficient of loss, providing an improved service experience.

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference44 articles.

1. Numerical Simulation of the Air Content of a Two-Phase Flow in a Non-Return Valve for the Correction of Billing Measures in Domestic Drinking Water Networks;Villegas;Technol. Rep. Kansai Univ.,2020

2. Brandt, M.J., Johnson, K.M., Elphinston, A.J., and Ratnayaka, D.D. (2017). Twort’s Water Supply, Butterworth-Heinemann. [7th ed.].

3. Ali, F., and Saidi, M.F.H. (2021, January 4–6). Water Leakage Detection Based on Automatic Meter Reading. Proceedings of the 2021 15th International Conference on Ubiquitous Information Management and Communication (IMCOM), Seoul, Republic of Korea.

4. Sensitivity of Water Meters to Small Leakage;Pietrosanto;Measurement,2021

5. Using Advanced Metering Infrastructure Data to Evaluate Consumer Compliance with Water Advisories during a Water Service Interruption;DiCarlo;Water Res.,2022

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