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- W2002124037 abstract "The turbine blades of Gas Turbines operating with “dirty” fuels are sometimes covered by a very thin liquid film, which originates from the condensation of the alkalic sulfates (mainly) in the flue gases. These films may influence drastically the collision coefficient of the impinging (ash) particles. This, in turn, influences the future trajectories of these particles and their adhesive properties, especially in the rotor blades where the Coriolis aceleration becomes a significant factor in the particle kinetic energy absorption process. The study reports on the capture film height and the variation of the collision coefficient with the film height. The experimental conditions correspond to those encountered in rotor blades, where the surface tension, the wave-making process and the boyancy all contribute to this energy absorption. The results indicate that the model based on the interaction of these factors gives a goodexplanation of the energy absorption process, except for the very thin height where particle apparent mass effects dominate the process." @default.
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- W2002124037 date "1990-06-11" @default.
- W2002124037 modified "2023-09-23" @default.
- W2002124037 title "The Particle-Wall, Normal-Impact Collision Coefficient in the Presence of a Liquid Film" @default.
- W2002124037 doi "https://doi.org/10.1115/90-gt-168" @default.
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