Title of article :
A Passive Micromixer with Koch Snowflakes Fractal Obstacle in Microchannel
Author/Authors :
Hasanah ، L. Departement of Physics Education - Universitas Pendidikan Indonesia , Nurvadila ، D. F. Departement of Physics Education - Universitas Pendidikan Indonesia , Pawinanto ، R. E. Departement of Electrical Engineering Education - Universitas Pendidikan Indonesia , Mulyanti ، B. Departement of Electrical Engineering Education - Universitas Pendidikan Indonesia , Wulandari ، C. Departement of Physics Education - Universitas Pendidikan Indonesia , Aminudin ، A. Departement of Physics Education - Universitas Pendidikan Indonesia , Yunas ، J. Institute of Microengineering and Nanoelectronics (IMEN) - Universiti Kebangsaan Malaysia (UKM)
From page :
1333
To page :
1344
Abstract :
The passive micromixer is one of the essential devices that can be integrated into the Lab on Chip (LoC) system. Micromixer is needed to increase mixing efficiency. In this paper, two Koch fractal obstacle-based micromixer models of Secondary Snowflakes Fractal Micromixer (SSFM) and Tertiary Snowflakes Fractal Micromixer (TSFM) were designed. The effect of the Koch fractal resistance angles (15°, 30°, 45°, 315°, 330°, 345°) and the influence of the inlet (T and T-vortex) were studied in this paper using COMSOL Multiphysics numerical simulations. The results showed that the TSFM structure with a 30o angle on the T-vortex inlet is optimal. The deflection phenomena generated by the TSFM obstacle enhance the contact area between the two fluids and chaotic convection can be increased at Reynolds Number (Re) 0.05 and Re 100. This paper examines concentration curves along the channel ranging from 1 mol/L to 5 mol/L. This clearly shows that the fluid flow direction changes within the microchannel. This work provides a new design for the micromixer.
Keywords :
Secondary snowflakes fractal micromixer , Tertiary snowflakes fractal , Micromixer , obstacle , Lab on chip , Microchannel , Tvortex inlet structure
Journal title :
Journal of Applied Fluid Mechanics (JAFM)
Journal title :
Journal of Applied Fluid Mechanics (JAFM)
Record number :
2727081
Link To Document :
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