International audienceThe paper presents an acoustic signal processing approach for the surveillance of a water pipe and the characterization of the water hammer effect. The experiment is based on ultrasonic transceivers and the validation is made with pressure sensors. The major objective is to quantify the pressure variation into the pipe using a non-intrusive method. Therefore, the speed of the transient was determined making use of the time-of-flight (TOF) which was obtained using the Recurrence Plot Analysis (RPA). Several comparisons between the signal processing approach and the classical techniques highlight the advantage of the non-intrusive method
In many water distribution systems, metallic pipes are being replaced by plastic pipes due to their ...
International audienceTransient signals are universally characterized by a short duration and a broa...
This paper describes a study of condition monitoring in water pipe using vibration sensor. The vibra...
This thesis develops an analytical model to predict the cross-correlation functions of leak signals ...
Leaks from buried water distribution pipes are commonly located by applying the correlation techniqu...
This paper aims to demonstrate a measurement method of pressure wave speed in stainless-steel pipe f...
Water hammering created by an unsteady flow in pipeline systems can cause excessive change in pressu...
Acoustic techniques have been used for many years to find and locate leaks in buried water distribut...
This paper we study the condition where the water hammer effect is occurs in pipe line. Water hammer...
A number of different methods that use signal processing of fluid transients (water hammer waves) fo...
Reducing losses in water distribution networks is a worldwide challenge and all utilities are develo...
Multi-point Acoustic Sensing (MAS) technology makes use of hydrophone sensors placed at discrete dis...
The failure of steel liner of pressure shafts of hydropower plants can have catastrophic consequence...
The prevention of excessive pressure build-up in pipelines requires a thorough understanding of wate...
In collaboration with Kiwa Water Research, TNO (Netherlands Organisation for Applied Scientific Rese...
In many water distribution systems, metallic pipes are being replaced by plastic pipes due to their ...
International audienceTransient signals are universally characterized by a short duration and a broa...
This paper describes a study of condition monitoring in water pipe using vibration sensor. The vibra...
This thesis develops an analytical model to predict the cross-correlation functions of leak signals ...
Leaks from buried water distribution pipes are commonly located by applying the correlation techniqu...
This paper aims to demonstrate a measurement method of pressure wave speed in stainless-steel pipe f...
Water hammering created by an unsteady flow in pipeline systems can cause excessive change in pressu...
Acoustic techniques have been used for many years to find and locate leaks in buried water distribut...
This paper we study the condition where the water hammer effect is occurs in pipe line. Water hammer...
A number of different methods that use signal processing of fluid transients (water hammer waves) fo...
Reducing losses in water distribution networks is a worldwide challenge and all utilities are develo...
Multi-point Acoustic Sensing (MAS) technology makes use of hydrophone sensors placed at discrete dis...
The failure of steel liner of pressure shafts of hydropower plants can have catastrophic consequence...
The prevention of excessive pressure build-up in pipelines requires a thorough understanding of wate...
In collaboration with Kiwa Water Research, TNO (Netherlands Organisation for Applied Scientific Rese...
In many water distribution systems, metallic pipes are being replaced by plastic pipes due to their ...
International audienceTransient signals are universally characterized by a short duration and a broa...
This paper describes a study of condition monitoring in water pipe using vibration sensor. The vibra...