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- W1969291385 abstract "This investigation is concerned with the combustion of a gaseous oxidizer jet discharging through an injector submerged in a bath containing a molten metal fuel. Conditions were limited to high injector Reynolds numbers, which generates a turbulent two-phase forced jet as opposed to a stream of individual bubbles. Experiments were conducted using chlorine as the oxidizer with sodium as the fuel. The extent of the gaseous portion of the flow, which corresponds to the flame length in more conventional systems, was observed with x-rays for a range of bath operating conditions. Temperature measurements were made along the centerline of the jet, in the region downstream of the active combustion zone. The two-phase turbulent combustion process was analyzed in a manner similar to conventional diffusion flames. A variable density single-fluid model was used to represent the two-phase mixture, in conjunction with an entrainment assumption appropriate for systems with large density differences between the jet and the ambient fluid. The theory provided an expression which correlated the present combustion length results; earlier measurements of flame lengths for gaseous forced turbulent diffusion flames; and, earlier measurements of vapor penetration length in two-phase condensing jets (by analogy). A similar correlation was also obtained between the centerline enthalpy decrement of the present combustion process, and scalar quantities in more conventional turbulent jet systems. In regard to both combustion lengths and centerline quantities, the large density difference between the injected and ambient materials in the present system, results in a substantial extension of the range of data for these correlations. Consideration of the thermodynamics of the metal combustion process also indicates conditions of operation where the extent of the gaseous portion of the flow is controlled by the recondensation of combustion product vapors, rather than consumption of the oxidizer." @default.
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- W1969291385 date "1975-01-01" @default.
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- W1969291385 title "Combustion of a submerged gaseous oxidizer jet in a liquid metal" @default.
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- W1969291385 doi "https://doi.org/10.1016/s0082-0784(75)80323-7" @default.
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