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The effects of the position of the vortex limiter on the cyclone performance were also investigated.
Three highly efficient design models are proposed based on design guidelines to enhance the cyclone performance.
Then numerous simulations were conducted with different structural parameters to optimize the cyclone performance.
Emission abatement cyclone performance is improved by increasing collection effectiveness or decreasing energy consumption.
The model considers particle movement and attrition, calcination and initial pore size distribution, pore plugging and cyclone performance.
The results demonstrate that artificial neural networks can offer an alternative and powerful approach to model the cyclone performance parameters.
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Cyclone performances can be improved by changing operational conditions and/or geometrical parameters.
The results show that the cyclone with three inlets has more collection efficiency, less pressure drop and less turbulence distribution with respect to cyclones with one and two inlets which is good in cyclones performance.
A novel vortex finder (slotted vortex finder) was designed to improve cyclone separator performance.
A multi-objective optimization study using NSGA-II technique has been performed to obtain the Pareto front for the best performance cyclone separator.
A low mass loading gas cyclone has two performance parameters, the Euler and Stokes numbers.
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CEO of Professional Science Editing for Scientists @ prosciediting.com