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- W1972107966 abstract "The steady-state transport and deposition of ‘‘high inertia’’ particles in turbulent duct flow is studied. A relatively simple yet fundamental PDF (probability density function) equation (kinetic equation) is proposed as a model for such systems together with models describing perfectly and partially adsorbing boundaries. Using the idea of particle mean free path it is shown how this equation may be reduced to a universal form. A numerical method of solution based on spectral collocation is presented, and the effectiveness of this is shown to be the result of the substantial reduction in complexity that it affords. Results from this approach are shown to be in very good agreement with those obtained from a random walk simulation, in contrast to those obtained from simple gradient-diffusion and gradient-diffusion/free-flight models. Evaluation of the separate terms in the momentum and energy equations derived from the kinetic equation illustrates how gradient diffusion breaks down close to the depositing wall. Finally, results of particle deposition as predicted by the kinetic equation are compared with those from experiment. Again there is extremely good agreement, despite the relatively simple form of the basic model." @default.
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- W1972107966 date "1994-10-01" @default.
- W1972107966 modified "2023-09-25" @default.
- W1972107966 title "Particle deposition from a turbulent flow. I. A steady‐state model for high inertia particles" @default.
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- W1972107966 doi "https://doi.org/10.1063/1.868397" @default.
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