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The experimental results demonstrated that the reflux cone and gaps (straight and spiral) in a vortex finder could improve separation performance of the cyclone separator through reducing the pressure drop and increasing the overall separation efficiency and grade efficiency.
The new cyclone separator with the vortex finder (Type D) that had both reflux cone and spiral gap (15° dextrorotation) configurations had the best separation performance, which reduced the pressure drop by 73% and increased overall separation efficiency by 9% as compared to the cyclone separator with the basic vortex finder (Type A).
Overall separation efficiency, grade separation efficiency and pressure drop of the mist eliminators were systematically studied by using Computational Fluid Dynamics (CFD) method.
This paper describes the influence of extra-column volume on overall separation efficiency for lab scale and its impact on the design of large scale systems.
The overall separation efficiency increased from 74.5% for a conventional cyclone to 80.7% for a cyclone with a lower cone slit.
However, they are still characterised by relatively poor performance mainly due to poor hydrodynamic design and the application of incomprehensive models for the overall separation efficiency.
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The effects of the various parameters including operation conditions, separator geometry and particle properties on the overall hydrodynamics and separation efficiency were investigated.
The ability to analyze all of the 20 fractions without any noticeable decrease in the separation efficiency demonstrates the overall effectiveness of the SPE clean-up step.
The simulations were verified experimentally by designing a prototype system of equal effective screening area, and with equal input masses of glass beads, an overall screening rate of 23 g/s and a maximum separation efficiency of 66.4% was achieved.
The overall goal was to develop the most sensitive results with no decrease in separation efficiency.
Optimization was performed taking into account both the separation efficiency of l-ASNase and its acidic variants as well as overall method robustness.
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overall separation factor
overall separation pattern
overall conversion efficiency
overall separation yield
overall sequencing efficiency
overall separation chain
overall mapping efficiency
overall separation decision
overall energy efficiency
overall fuel efficiency
overall computation efficiency
overall separation quality
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