Despite the very simple geometry, T-shaped micro-mixers are characterized by different and complex laminar flow regimes. In the present work, experiments and direct numerical simulations are employed jointly to investigate unsteady periodic flow regimes, viz. the asymmetric and symmetric regimes. The first is characterized by a periodic dynamics of the three-dimensional structures and by a high degree of mixing, while in the second the flow always maintains a double mirror symmetry in the mixing channel, which causes a dramatic decrease of the mixing performance. A methodology, allowing us to quantitatively compare the numerical predictions with experimental flow visualizations, is used to investigate these unsteady regimes and to evaluate ...
The laminar flow patterns and mixing performance of two different micromixers have been investigated...
The effect of the inlet flow conditions on the degree of mixing in a T-shaped micro-mixer is investi...
In relation to the time-scale of chemical kinetics, diffusive transport in micro-devices is faster t...
Despite the very simple geometry, T-shaped micro-mixers are characterized by different and complex l...
A Direct Numerical Simulation of the mixing process between two water streams in a T-shaped micro-de...
Despite the very simple geometry, T-shaped micro-mixers are characterized by different flow regimes ...
Experiments and direct numerical simulations are used jointly to study the asymmetric and symmetric ...
A Direct Numerical Simulation of the mixing process between two streams having the same flow rate in...
Unsteady flow regimes in a micro T-mixer are investigated. Direct numerical simulations (DNS) show ...
The different flow regimes occurring in T-mixers are investigated by means of direct numerical simul...
The simulation of the flow inside a T-shaped micromixer is carried out, aimed at identifying the tra...
Experimental flow visualizations and velocity measurements are used jointly with numerical simulatio...
Flow regimes and mixing pattern in a T-type micromixer at high Reynolds numbers were studied by nume...
Micro-reactors are a new attractive technology for process development and intensification in the ph...
Computational fluid dynamics (CFD) is very appealing to investigate mixing and reaction in microdevi...
The laminar flow patterns and mixing performance of two different micromixers have been investigated...
The effect of the inlet flow conditions on the degree of mixing in a T-shaped micro-mixer is investi...
In relation to the time-scale of chemical kinetics, diffusive transport in micro-devices is faster t...
Despite the very simple geometry, T-shaped micro-mixers are characterized by different and complex l...
A Direct Numerical Simulation of the mixing process between two water streams in a T-shaped micro-de...
Despite the very simple geometry, T-shaped micro-mixers are characterized by different flow regimes ...
Experiments and direct numerical simulations are used jointly to study the asymmetric and symmetric ...
A Direct Numerical Simulation of the mixing process between two streams having the same flow rate in...
Unsteady flow regimes in a micro T-mixer are investigated. Direct numerical simulations (DNS) show ...
The different flow regimes occurring in T-mixers are investigated by means of direct numerical simul...
The simulation of the flow inside a T-shaped micromixer is carried out, aimed at identifying the tra...
Experimental flow visualizations and velocity measurements are used jointly with numerical simulatio...
Flow regimes and mixing pattern in a T-type micromixer at high Reynolds numbers were studied by nume...
Micro-reactors are a new attractive technology for process development and intensification in the ph...
Computational fluid dynamics (CFD) is very appealing to investigate mixing and reaction in microdevi...
The laminar flow patterns and mixing performance of two different micromixers have been investigated...
The effect of the inlet flow conditions on the degree of mixing in a T-shaped micro-mixer is investi...
In relation to the time-scale of chemical kinetics, diffusive transport in micro-devices is faster t...