Non-coalescence of two bodies of the same liquid and the suppression of contact between liquid drops and solid surfaces is being studied through a pair of parallel investigations being conducted at the Georgia Institute of Technology and the Microgravity Research and Support (MARS) Center in Naples, Italy. Both non-coalescence and contact suppression are achieved by exploiting the mechanism of thermocapillary convection to drive a lubricating film of surrounding gas (air) into the space between the two liquid free surfaces (non-coalescence) or between the drop free surface and the solid (contact suppression). Experiments performed to date include flow visualization experiments in both axisymmetric and (nearly) two-dimensional geometries and...
Micro-total analysis systems (mu TAS) have attracted wide attention and are identified as a promisin...
Experiments to be performed in a weightless environment in order to study collision and coalescence ...
A droplet may be prevented from wetting a solid surface by the existence of a lubricating film of ai...
Non-coalescence of two bodies of the same liquid and the suppression of contact between liquid drops...
The primary objective of the research is to perform ground-based analysis and experiments on the int...
The overall objective of this research is to develop models to predict drop-size-distribution evolut...
Due to capillarity, sessile droplets of identical liquids will instantaneously fuse when they come i...
The objective of this experimental study is to understand the detailed mechanics of the coalescence ...
Due to capillarity, sessile droplets of identical liquids will instantaneously fuse when they come i...
In this report we have catalogued the flow regimes observed in microgravity, summarized correlations...
International audienceAn investigation of the coalescence of two water drops on a surface is present...
When materials are processed in free fall, buoyant forces will be substantially reduced. Thus, the b...
The coalescence of two initially stationary drops of different size is investigated by solving the u...
We present the results of a combined experimental and numerical investigation of the coalescence of ...
The Surface Tension Driven Convection Experiment (STDCE) was designed to study basic fluid mechanics...
Micro-total analysis systems (mu TAS) have attracted wide attention and are identified as a promisin...
Experiments to be performed in a weightless environment in order to study collision and coalescence ...
A droplet may be prevented from wetting a solid surface by the existence of a lubricating film of ai...
Non-coalescence of two bodies of the same liquid and the suppression of contact between liquid drops...
The primary objective of the research is to perform ground-based analysis and experiments on the int...
The overall objective of this research is to develop models to predict drop-size-distribution evolut...
Due to capillarity, sessile droplets of identical liquids will instantaneously fuse when they come i...
The objective of this experimental study is to understand the detailed mechanics of the coalescence ...
Due to capillarity, sessile droplets of identical liquids will instantaneously fuse when they come i...
In this report we have catalogued the flow regimes observed in microgravity, summarized correlations...
International audienceAn investigation of the coalescence of two water drops on a surface is present...
When materials are processed in free fall, buoyant forces will be substantially reduced. Thus, the b...
The coalescence of two initially stationary drops of different size is investigated by solving the u...
We present the results of a combined experimental and numerical investigation of the coalescence of ...
The Surface Tension Driven Convection Experiment (STDCE) was designed to study basic fluid mechanics...
Micro-total analysis systems (mu TAS) have attracted wide attention and are identified as a promisin...
Experiments to be performed in a weightless environment in order to study collision and coalescence ...
A droplet may be prevented from wetting a solid surface by the existence of a lubricating film of ai...