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Asymmetric microfluidic junctions are found to show better mixing than symmetric microfluidic junctions.
In this paper a centrifugal, serpentine micromixer is simulated and reformed toward better mixing performance.
Pairs of CVP with smaller scales are preferable for achieving a better mixing.
The simulation shows that smaller channel depth results in the relatively better mixing performance.
Argon is also blown during this end phase for better mixing and removal of hydrogen and nitrogen.
The serpentine channel showed better mixing performance over the flow rate range considered.
The introduction of the double feed system also contributed to better mixing in the main extruder.
It could have ascribed to the better mixing rate, gain of swirl velocity and the turbulence level of the bowl.
The nucleation process can be accelerated by better mixing, higher supersaturation and the memory effect (water quality).
A slightly better mixing is achieved compared to the established SHM and significantly fewer grooves are needed.
In addition, for better mixing and heat transfer, electromagnetic coils or permeable refractory blocks for gas stirring are often installed in furnace bottoms.
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