A cavitating two-phase flow of water in a pipe with area shrinkage was experimentally investigated, acquiring at high sampling rate pressure signals and images of the cavitating flow-field. The fluctuations of the pressure measurements in the internal orifice and of the intensity level of the images' pixels were decomposed using the wavelet transform to analyze the frequency distribution of the signals energy with respect to the flow behavior and to highlight the influence of temperature on the phenomena under investigation. It was shown that the energy content at each frequency band of the acquired signals is well related to cavitation flow-field behavior
Experiments on a water cavitating orifice were conducted to investigate the influence of pressure an...
Thermally induced oscillations in two phase slug flow may largely affect the design heat transfer in...
Synchrotron-based radiation techniques are increasingly used in the field of flow condition measurem...
A cavitating two-phase flow of water in a pipe with area shrinkage was experimentally investigated, ...
Cavitating and bubbly flows involve a host of physical phenomena and processes ranging from nucleati...
This paper presents a data acquisition system oriented to detect bubble collapse time and pressure l...
This paper presents a data acquisition system oriented to detect bubble collapse time and pressure l...
A new method has been developed for the determination of the spatial distribution of the cavitation ...
The flow pattern generated in pipes for two-phase gas-liquid horizontal flows can significantly affe...
Pulsating Heat Pipes are two phase passive heat transfer devices characterized by a thermally induce...
It is well-known that transit-time ultrasonic flowmeters (TTUF) are unsuitable for bubblecontained f...
This paper presents a novel non-contact method for simultaneous analysis of pressure and velocity co...
The blockage of the sensing lines of a differential-pressure (DP) flow sensor has been found to be t...
[[abstract]]Background and aims of the study: Cavitation in the mechanical heart valve (MHV) was fir...
The blockage of the sensing lines of a differential-pressure (DP) flow sensor has been found to be t...
Experiments on a water cavitating orifice were conducted to investigate the influence of pressure an...
Thermally induced oscillations in two phase slug flow may largely affect the design heat transfer in...
Synchrotron-based radiation techniques are increasingly used in the field of flow condition measurem...
A cavitating two-phase flow of water in a pipe with area shrinkage was experimentally investigated, ...
Cavitating and bubbly flows involve a host of physical phenomena and processes ranging from nucleati...
This paper presents a data acquisition system oriented to detect bubble collapse time and pressure l...
This paper presents a data acquisition system oriented to detect bubble collapse time and pressure l...
A new method has been developed for the determination of the spatial distribution of the cavitation ...
The flow pattern generated in pipes for two-phase gas-liquid horizontal flows can significantly affe...
Pulsating Heat Pipes are two phase passive heat transfer devices characterized by a thermally induce...
It is well-known that transit-time ultrasonic flowmeters (TTUF) are unsuitable for bubblecontained f...
This paper presents a novel non-contact method for simultaneous analysis of pressure and velocity co...
The blockage of the sensing lines of a differential-pressure (DP) flow sensor has been found to be t...
[[abstract]]Background and aims of the study: Cavitation in the mechanical heart valve (MHV) was fir...
The blockage of the sensing lines of a differential-pressure (DP) flow sensor has been found to be t...
Experiments on a water cavitating orifice were conducted to investigate the influence of pressure an...
Thermally induced oscillations in two phase slug flow may largely affect the design heat transfer in...
Synchrotron-based radiation techniques are increasingly used in the field of flow condition measurem...