We perform a quantitative characterization of a microbubble injector in conditions relevant to microgravity. The injector pregenerates a slug flow by using a capillary T-junction, whose operation is robust to changes in gravity level. We address questions regarding the performance under different injection conditions. In particular we focus on the variation of both gas and liquid flow rates. The injection performance is characterized by measuring bubble injection frequency and bubble sizes. We obtain two distinct working regimes of the injector and identify the optimal performance as the crossover region between them.Peer ReviewedPostprint (published version
We present an experimental study on the bubble–slug flow pattern transition which takes place in two...
The aim of this study was to investigate the effect of operating parameters such as liquid flow rate...
A polydimethylsiloxane microchip consisting of a T-junction microchannel network and a thin glass ca...
We perform a quantitative characterization of a microbubble injector in conditions relevant to micro...
Abstract We perform a quantitative characterization of a microbubble injector in conditions relevant...
We perform a characterization of a recently reported microbubble injector in conditions relevant to ...
We perform a characterization of a recently reported minibubbles (bubbles with a diameter of the ord...
In this work, we compare the performance of two different methods for generating bubbles in conditio...
A newmethod to create a jet of a virtually monodisperse microbubble suspension of prescribed bubble ...
We present a new experimental setup for the study of bubble coalescence and bubble jet interactions ...
We performed a characterization of the bubbly and slug flow regimes in minichannels in conditions re...
Promising technological applications of two-phase flows in space have captured the increasing intere...
We performed a characterization of the bubbly and slug flow regimes in minichannels in conditions r...
Three main different flow patterns were found for two-phase gas-liquid flow in microgravity conditio...
To finish my second academic year I have to make a training course, I choose it in the Microgravity ...
We present an experimental study on the bubble–slug flow pattern transition which takes place in two...
The aim of this study was to investigate the effect of operating parameters such as liquid flow rate...
A polydimethylsiloxane microchip consisting of a T-junction microchannel network and a thin glass ca...
We perform a quantitative characterization of a microbubble injector in conditions relevant to micro...
Abstract We perform a quantitative characterization of a microbubble injector in conditions relevant...
We perform a characterization of a recently reported microbubble injector in conditions relevant to ...
We perform a characterization of a recently reported minibubbles (bubbles with a diameter of the ord...
In this work, we compare the performance of two different methods for generating bubbles in conditio...
A newmethod to create a jet of a virtually monodisperse microbubble suspension of prescribed bubble ...
We present a new experimental setup for the study of bubble coalescence and bubble jet interactions ...
We performed a characterization of the bubbly and slug flow regimes in minichannels in conditions re...
Promising technological applications of two-phase flows in space have captured the increasing intere...
We performed a characterization of the bubbly and slug flow regimes in minichannels in conditions r...
Three main different flow patterns were found for two-phase gas-liquid flow in microgravity conditio...
To finish my second academic year I have to make a training course, I choose it in the Microgravity ...
We present an experimental study on the bubble–slug flow pattern transition which takes place in two...
The aim of this study was to investigate the effect of operating parameters such as liquid flow rate...
A polydimethylsiloxane microchip consisting of a T-junction microchannel network and a thin glass ca...