In this paper we propose a new split and recombination (SAR) micromixer that is compatible with the microfabrication process of polydimethylsiloxane ( PDMS). We evaluate the mixing efficiency of the fabricated SAR micromixer and find that it increases interfaces exponentially. Simulation using CFD-ACE+ shows a cross-sectional view of the flow and estimates the mixing efficiency of the SAR micromixer and the pressure drop for a unit of the SAR micromixer. A mixing experiment involving phenolphthalein and NaOH solutions shows that interfaces, represented as red lines, are increased by SAR mixing. The result of our mixing experiment involving blue dye and water is evaluated to determine the mixing efficiency by calculating the standard deviati...
In this study, a new passive ‘H-C' micromixer based on the split and recombine (SAR) principle is pr...
In this paper, micro T-mixers are fabricated and tested to investigate their feasibility as a rapid ...
Achieving efficient mixing of fluids is a great challenge in microfluidics that has been addressed u...
We developed a highly efficient passive mixing device based on a split-and-recombine (SAR) configura...
A numerical investigation of the mixing performance and fluid flow in a new split and recombine (SAR...
This paper presents a new type of passive microfluidicmixer called the ‘‘H-micromixer’’.This type of...
A novel passive micromixer, denoted as the Y-Y mixer, based on split-and-recombine (SAR) principle ...
© MIDEM Society. Personalised dosing microfluidic devices have great potential in transforming curre...
In this study, two novel split and recombine (SAR) ‘H-C’ and ‘Y-Y’ micromixers along with a known SA...
Abstract This study introduces a novel generation of 3D splitting and recombination (SAR) passive mi...
In this paper, numerical analysis and experimental investigation of a micromixer, which was specific...
This paper describes the design, simulation, fabrication and experimental analysis of a passive micr...
Flow pattern in two split and recombine (SAR) micromixers were experimentally studied by -LIF measur...
The aim of this work was to quantify the performance of two well-known mixing mechanisms used in mic...
We showed that efficient mixing of fluid flows at microscales can be achieved by a simple type of mi...
In this study, a new passive ‘H-C' micromixer based on the split and recombine (SAR) principle is pr...
In this paper, micro T-mixers are fabricated and tested to investigate their feasibility as a rapid ...
Achieving efficient mixing of fluids is a great challenge in microfluidics that has been addressed u...
We developed a highly efficient passive mixing device based on a split-and-recombine (SAR) configura...
A numerical investigation of the mixing performance and fluid flow in a new split and recombine (SAR...
This paper presents a new type of passive microfluidicmixer called the ‘‘H-micromixer’’.This type of...
A novel passive micromixer, denoted as the Y-Y mixer, based on split-and-recombine (SAR) principle ...
© MIDEM Society. Personalised dosing microfluidic devices have great potential in transforming curre...
In this study, two novel split and recombine (SAR) ‘H-C’ and ‘Y-Y’ micromixers along with a known SA...
Abstract This study introduces a novel generation of 3D splitting and recombination (SAR) passive mi...
In this paper, numerical analysis and experimental investigation of a micromixer, which was specific...
This paper describes the design, simulation, fabrication and experimental analysis of a passive micr...
Flow pattern in two split and recombine (SAR) micromixers were experimentally studied by -LIF measur...
The aim of this work was to quantify the performance of two well-known mixing mechanisms used in mic...
We showed that efficient mixing of fluid flows at microscales can be achieved by a simple type of mi...
In this study, a new passive ‘H-C' micromixer based on the split and recombine (SAR) principle is pr...
In this paper, micro T-mixers are fabricated and tested to investigate their feasibility as a rapid ...
Achieving efficient mixing of fluids is a great challenge in microfluidics that has been addressed u...