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Introduction to fluid mechanical principles(operation limits, elutriation, state diagrams, dimensioning of gas distributors, fluidization experiments in laboratories); local fluid mechanics (bubble development, growth and coalescence, gas jets in fluidized beds, CFD modeling in fluid mechanics, DEM/CFD modeling in fluid mechanics); Methods of characterization of fluidized beds (particle attrition and mechanical strength, breakage behaviour of granules and agglomerates, particle velocity and particle concentration, particle characterization experiments in laboratory); heat transfer in fluidized beds (between fluid and particles, between fluidized bed and internals, influence of backmixing and bubbles, cooling and heating of solids (batch, continuous); Vaccum drying in fluidized beds (fundamentals, modeling, equipment); fundamentals of granulation and granulation (adhesion forces, binding mechanics, influence of material properties); fluidized bed spray granulation (fundamentals, kinetics, micro-mechanisms, operation regime maps, modeling of granulation, modeling of apparatus configuration and scale-up, processes, design options, equipment, granulation experiments in laboratory); flowsheet simulation of complex solids processes (continuous fluidized bed drying, bat and continuous fluidized bed spray granulation, multi-scale simulation of fluidized bed spray granulation)
The course is designed for engineers, pharmacists, chemists and food technologists concerned with design, development, operation and automation of processes to whom modern process technologies are of great importance
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