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- W1973100652 abstract "Numerical simulations have been performed to optimize various water-mist injection characteristics for flame suppression. A two-continuum formulation is used in which the gas phase and the water mist are both described by equations of the eulerian form. The effects of droplet diameter, mist injection angle (throw angle), mist density, and velocity on water-mist entrainment into the flame and flame suppression are quantified. Droplet sectional trajectories and density contours are used to identify the regions of the flame where the droplets evaporate and absorb energy. Numerical results are presented for symmetric and asymmetric spray pattern geometries resulting from base injection and side injection nozzle orientation. Results indicate that smaller droplet diameters produce optimum suppression under base injection configuration, while larger droplet diameters are needed for optimum suppression for the side injection configuration. For all cases, the model is used to determine the water mist required for different levels of suppression, and this is reported in terms of the ratio of the water-mist supply rate to the fuel flow rate." @default.
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- W1973100652 date "1998-01-01" @default.
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- W1973100652 title "Optimizing water-mist injection characteristics for suppression of coflow diffusion flames" @default.
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- W1973100652 doi "https://doi.org/10.1016/s0082-0784(98)80143-4" @default.
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