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Detailed modeling of soot particle nucleation and growth Detailed modeling of soot particle nucleation and growth in laminar premixed hydrocarbon flames is presented The model begins with fuel pyrolysis, followed by the formation of polycyclic aromatic hydrocarbons, their planar growth and coagulation into spherical particles, and finally, surface growth and oxidation of the particles The computational results are in quantitative agreement with
The aggregation of colloidal particles at the air—water interface Previous investigators have noted that small particles at a fluid interface may exhibit a special tendency to aggregate Colloidal dispersions which are stable in the bulk often form a coagulum at the air—liquid surface Such surface aggregation is an important factor in operations that require clean or controlled interfaces The present work seeks to describe particle adsorption and
Thermal performance of batch boiling water targets for 18F production Abstract Batch boiling targets are commonly used in cyclotrons to produce Fluorine-18 by proton bombardment of Oxygen-18 enriched water Computational models have been developed to predict the thermal performance of bottom-pressurized batch boiling production targets The models have been validated with experimental test data from the Duke University Medical Cyclotron and the Wisconsin Medical