This is the very sophisticated implicit LES which actually uses 27 lattice speeds. Inputs are 2mm to 4mm uniform dust particles at a 1:10 mass ratio. Ryan Amos and his big brain provided the cyclone design via Perry's - I just verified it using John Thomas and his team's software. If you're an engineer and don't find this beautiful. ![]() ![]() #mstarcfd #mstar #computationalfluiddynamics #cfd #finiteelementanalysis #engineering #itsyourdamnjobdennisĪ cyclone separator cleaning particulate out of air - clean air out the top! I couldn't wait to post this one as you can literally see the vortex core of the cyclone separator evolve from nothing. The simulation on the left shows the DEM particles being created (the little colored balls) and the simulation on the right is ACTUAL RENDERING from M-Star Post.ĭid I mention this is all with LES simulation and solved entirely on the GPU? And that it took longer to render than it did to actually solve? This fully bidirectional hybridization opens doors to spray breakup analyses, droplet condensation, boiling simulations and so much more. And when there's a enough DEM particles in one local area, they convert back to VOF. This technique allows individual parcels of free surface fluid to seamlessly convert into discrete droplets that are individually tracked as particles. This simulation showcases M-Star Simulations newest bidirectional volume-of-fluid to discrete element hybridization (VOF-DPM-VOF). ![]() As the CTO it's your job to make sure your business is utilizing the most advanced software to maximize productivity and improve product design. I hope you're reaching into your pocket to call Latticept and M-Star Simulations, Dennis.
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