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- W2201413881 abstract "This chapter discusses the quantitative formulation of the particle transport equation in various well-defined deposition systems. It elaborates calculations of particle deposition rate from the particle transport equation. It combines fundamental theories of colloidal interactions and hydrodynamics. It presents the representative simulations for the effect of several chemical-colloidal variables on the rate of particle deposition. The rotating disc technique has been used extensively in particle deposition studies because of the relatively simple and well-defined hydrodynamics and mass transfer. Mass transfer in stagnation-point flow has the same advantages; the thickness of the hydrodynamic and diffusion boundary layers remains constant in the vicinity of the stagnation point. Further, in a stagnation-point flow system, it is possible to observe the deposition of particles directly by microscopic means when a transparent collector is used. This observation technique cannot be applied to the rotating disc system because of the motion of the disc. Furthermore, particle deposition in a stagnation-point flow can provide a first approximation for deposition on more complex systems such as spherical and cylindrical collectors." @default.
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- W2201413881 date "1995-01-01" @default.
- W2201413881 modified "2023-09-28" @default.
- W2201413881 title "Modelling of particle deposition onto ideal collectors" @default.
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- W2201413881 doi "https://doi.org/10.1016/b978-075067024-1/50005-4" @default.
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