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For large particles ( left(R>>{M}_{mathrm{v}}^0/L delta right) ) diffusion-controlled kinetics dominates.
The computed turbulent intensity is lower for large particles than for small particles, as measured.
In this way, good agreement with the experimental results is obtained for large particles.
This effect increases for large particles or in the absence of radiation.
For large particles of low thermal conductivity the two-region model was much better.
Gas convective contribution was found to be substantial especially at high gas velocities and for large particles.
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This paper presents a new interactive parallel visualization method for large particle datasets by directly rendering individual particles based on a parallel rendering cluster.
Schwarz et al. [ 220] have shown that the SP2, when optimized for large particle detection, can adequately measure rBC up to volume equivalent diameters of 2 μm.
CSE samples (n = 10) represent CSO bypass flow from the WWTP during CSO events; treatment of these flows is limited to vortex separation for large particle removal and disinfection.
Therefore, for larger particles, the ΔT 8.7 10.8 increases.
Eq. (2) includes a particle size variable but predicts increasingly higher beach crests for larger particles.
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