This paper reviews a number of unsteady friction models for transient pipe flow. Two distinct unsteady friction models, the Zielke and the Brunone models, are investigated in detail. The Zielke model, originally developed for transient laminar flow, has been selected to verify its effectiveness for "low Reynolds number" transient turbulent flow. The Brunone model combines local inertia and wall friction unsteadiness. This model is verified using the Vardy's analytically deduced shear decay coefficient C* to predict the Brunone's friction coefficient k rather than use the traditional trial and error method for estimating k. The two unsteady friction models have been incorporated into the method of characteristics water hammer algorithm. Nume...
In this study, the friction factors of unsteady pipe flows have been experimentally investigated. Th...
A robust prediction system should monitor all possible hydraulic transients, which is significant fo...
Anton Bergant, John Vítkovský, Angus R. Simpson, Martin Lamberthttp://www.iahr.org/site/cms/contentv...
This paper reviews a number of unsteady friction models for transient pipe flow. Two distinct unstea...
In this paper, basic unsteady flow types and transient event types are categorized, and then unstead...
2013-2014 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
The friction in non-stationary flow is an intriguing and interesting phenomenon. Many types of non-s...
Unsteady flow in pipe networks is efficiently modelled using a one-dimensional flow approximation. I...
In real systems, the phenomena, such as pipe-wall viscoelasticity, unsteady friction or fluid struct...
The accurate simulation of pressure transients in pipelines and pipe networks is becoming increasing...
The accurate and appropriate simulation of pressure transients (or unsteady flows) in pipeline syste...
Applications that warrant transient flow simulation over a time scale well in excess of the wave tra...
Two of the most promising analytical models of unsteady friction in turbulent pipe flows are based o...
Transient events are frequent in water distribution systems. However, until now, most of the applica...
The study of draining processes without admitting air has been conducted using only steady friction ...
In this study, the friction factors of unsteady pipe flows have been experimentally investigated. Th...
A robust prediction system should monitor all possible hydraulic transients, which is significant fo...
Anton Bergant, John Vítkovský, Angus R. Simpson, Martin Lamberthttp://www.iahr.org/site/cms/contentv...
This paper reviews a number of unsteady friction models for transient pipe flow. Two distinct unstea...
In this paper, basic unsteady flow types and transient event types are categorized, and then unstead...
2013-2014 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
The friction in non-stationary flow is an intriguing and interesting phenomenon. Many types of non-s...
Unsteady flow in pipe networks is efficiently modelled using a one-dimensional flow approximation. I...
In real systems, the phenomena, such as pipe-wall viscoelasticity, unsteady friction or fluid struct...
The accurate simulation of pressure transients in pipelines and pipe networks is becoming increasing...
The accurate and appropriate simulation of pressure transients (or unsteady flows) in pipeline syste...
Applications that warrant transient flow simulation over a time scale well in excess of the wave tra...
Two of the most promising analytical models of unsteady friction in turbulent pipe flows are based o...
Transient events are frequent in water distribution systems. However, until now, most of the applica...
The study of draining processes without admitting air has been conducted using only steady friction ...
In this study, the friction factors of unsteady pipe flows have been experimentally investigated. Th...
A robust prediction system should monitor all possible hydraulic transients, which is significant fo...
Anton Bergant, John Vítkovský, Angus R. Simpson, Martin Lamberthttp://www.iahr.org/site/cms/contentv...