The dependence of leakage on fluid pressure in pressurized pipes has been investigated by many Authors. The relevance of this specific topic in water supply system management is clear: the efficaciousness of pressure control on leakage reduction is measured by the exponent of the power law relationship linking leak flow and pipe inner pressure. While the classical orifice law assumes that the pressure exponent is equal to 1/2, in literature, several experimental works show that the exponent could be greater than 1/2, for some leak geometries and pipe characteristics. In this paper, results of experimental tests carried out at the Water Engineering Laboratory of the University of Perugia on a polyethylene pipe are shown. To assess whether or not a possible leak area variation due to the pressure can influence the leak discharge, both pressures and strains are measured. © 2010 Taylor & Francis Group, London.

Leak discharge and strains in a polyethylene pipe

Massari C;
2010

Abstract

The dependence of leakage on fluid pressure in pressurized pipes has been investigated by many Authors. The relevance of this specific topic in water supply system management is clear: the efficaciousness of pressure control on leakage reduction is measured by the exponent of the power law relationship linking leak flow and pipe inner pressure. While the classical orifice law assumes that the pressure exponent is equal to 1/2, in literature, several experimental works show that the exponent could be greater than 1/2, for some leak geometries and pipe characteristics. In this paper, results of experimental tests carried out at the Water Engineering Laboratory of the University of Perugia on a polyethylene pipe are shown. To assess whether or not a possible leak area variation due to the pressure can influence the leak discharge, both pressures and strains are measured. © 2010 Taylor & Francis Group, London.
2010
Inglese
Integrating Water Systems - Proceedings of the 10th International on Computing and Control for the Water Industry, CCWI 2009
521
525
9780415548519
http://www.scopus.com/record/display.url?eid=2-s2.0-84859909656&origin=inward
1-3 September 2009
Sheffield (UK)
Leak
polyethylene pipe
5
none
Ferrante, M; Massari, C; Cluni, F; Brunone, B; Meniconi, S
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/312796
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