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To verify the results obtained in the SQP optimization phase, another exhaustive batch simulation was carried out, this time using smaller parameter increment sizes: P1_increment_size = P2_increment_size = P3_increment_size = 0.01 m, (alpha _F)_increment_size = 1.0°.
Starting from the lower bounds, first, an exhaustive batch simulation was carried out using the following parameter increment sizes: P1_increment_size = P2_increment_size = P3_increment_size = 0.03 m, (alpha _F)_increment_size = 3.0° to obtain an initial point for the SQP optimization phase.
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The simulation was carried out 1000 times.
Simulation is carried out in two steps.
All parameter optimizations and batch mode simulations were carried out using Matlab (version 7; MathWorks, Natick, MA) (see Supplementary Materials and Methods online).
Focusing on binary particle mixtures and fixing the density and diameter of the heavy/large particles, transient batch CFD-coarse-grained DPM simulations were carried out with varying densities or sizes of the light/small particles to evaluate to what extent combining these three functionalities is possible within a vortex chamber of given design.
Simulations were carried out on Matlab [16].
Simulations were carried out over two days.
The simulations are carried out with b=1 s−1.
The simulations were carried out in Matlab.
Overall 30 simulations were carried out.
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