The optical fiber probe has been for the first time applied to investigate the hydrodynamics and gas-phase distribution at high gas/liquid ratios in a two-phase flow monolith bed with 0.048 m diameter and 400 cpsi. Local hydrodynamic parameters including gas holdup, bubble frequency, bubble velocity, and bubble length in single channels were measured by 16 inserted single-point optical fiber probes within the bed under a nozzle as the liquid distributor. The following findings are reported. (1) The optical fiber probe can be used as an efficient and convenient technique for measuring local hydrodynamic parameters inside the channels of a monolith bed; (2) within the range of high gas/liquid ratios under which experiments were conducted, chu...
A new measuring technique dedicated to bubble velocity and size measurements in complex bubbly flows...
The study of gas–liquid–solid systems structure requires reliable measurement tools. In this paper, ...
International audienceThe study of gas-liquid-solid systems structure requires reliable measurement ...
Two-phase hydrodynamics has been experimentally investigated using optical fibre probes in individua...
When bubble columns are operated under industrial relevant conditions (high gas and liquid flow rate...
A dual-channel optical fiber probe was developed to quantify the bubble characteristics (void fracti...
The measurement of the individual bubble dynamics in a high void fraction bubbly flow is of primary ...
An optical fiber probe was developed successfully for the study of bubble characteristics in three-p...
International audienceThe measurement accuracy of a mono-fiber optical probe is studied experimental...
An alternate and easy method of constructing an optical fiber probe tip is presented for the study o...
Bubble measurements on a fluidized bed in bubbling regime using optical fibre probes (OFP) are repor...
Study of hydrodynamics is very important for design and optimization of fluidized bed reactor. They ...
New time averaged data of two-phase flow in bubbly and slug regimes are presented. A modified dual s...
A four-point optical fiber probe technique was employed in a split-cylinder airlift reactor with an ...
The effect of a circular configuration of intense vertical immersed tubes on the hydrodynamic parame...
A new measuring technique dedicated to bubble velocity and size measurements in complex bubbly flows...
The study of gas–liquid–solid systems structure requires reliable measurement tools. In this paper, ...
International audienceThe study of gas-liquid-solid systems structure requires reliable measurement ...
Two-phase hydrodynamics has been experimentally investigated using optical fibre probes in individua...
When bubble columns are operated under industrial relevant conditions (high gas and liquid flow rate...
A dual-channel optical fiber probe was developed to quantify the bubble characteristics (void fracti...
The measurement of the individual bubble dynamics in a high void fraction bubbly flow is of primary ...
An optical fiber probe was developed successfully for the study of bubble characteristics in three-p...
International audienceThe measurement accuracy of a mono-fiber optical probe is studied experimental...
An alternate and easy method of constructing an optical fiber probe tip is presented for the study o...
Bubble measurements on a fluidized bed in bubbling regime using optical fibre probes (OFP) are repor...
Study of hydrodynamics is very important for design and optimization of fluidized bed reactor. They ...
New time averaged data of two-phase flow in bubbly and slug regimes are presented. A modified dual s...
A four-point optical fiber probe technique was employed in a split-cylinder airlift reactor with an ...
The effect of a circular configuration of intense vertical immersed tubes on the hydrodynamic parame...
A new measuring technique dedicated to bubble velocity and size measurements in complex bubbly flows...
The study of gas–liquid–solid systems structure requires reliable measurement tools. In this paper, ...
International audienceThe study of gas-liquid-solid systems structure requires reliable measurement ...