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- W42469429 abstract "A combined experimental-theroretical attack on the problem of multicomponent deposition of condensible inorganic materials (present in combustion gases) on immersed solids (turbine blades, duct walls, heat exchanger surfaces) is outlined. With the help of seeded laboratory burner data on Na/sub 2/SO/sub 4/ and B/sub 2/O/sub 3/ deposition, a comprehensive but tractable convective diffusion deposition rate theory, based on the assumption of a multicomponent chemically frozen boundary layer (CFBL), has been developed for making self-consistent salt/ash deposition rate predctions over a wide variety of environmental conditions of gas turbine and magneto-gas-dynamic (MGD) interest. Under the conditions of these experiments (highly undersaturated mainstream), particle formation and transport are evidently negligible; however, our CFBL theory is sufficiently general to embrace the transport of particles present in the mainstream, provided they are small enough to be considered heavy molecules. Interesting corollaries of the present CFBL theory are: (1) a dew point is not a purely thermodynamic quantity, but rather is influenced by Soret and multicomponent diffusion phenomena, as well as (gas phase and interfacial) nonequilibrium phenomena; and (2) in any particular situation there is more than one dew point, depending upon its operational definition. We conclude with an assessment of the onset and rolemore » of boundary layer condensation processes and a summary of research needs highlighted by this program.« less" @default.
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- W42469429 date "1979-01-01" @default.
- W42469429 modified "2023-09-24" @default.
- W42469429 title "Transport, thermodynamic and kinetic aspects of salt/ash deposition rates from combustion gases" @default.
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