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- W2016366751 abstract "The objective of this work is to provide guidelines for scaling of swirl-stabilized burners fired with pulverized coal with emphasis on NO x emissions. The experimental data spanning the thermal input range from 0.9 to 12 MW are used. At the high thermal input end, the scaling, range has been extended to a 50-MW power representing a full industrial-size burner. At the low thermal input end, our considerations have approached flames as small as 176 kW, representing a laboratory scale. For the extrapolation, a mathematical model for predicting properties of pulverized coal flames is used. Constant velocity and constant residence time-scaling criteria have been employed. When the prototype experiments are carried out at thermal inputs larger than 4 MW, the NO x emissions are representative of full industrial-scale applications. The scaling can be successfully carried out using either the constant velocity or the constant residence time principle. When the prototype experiments are carried out at thermal inputs lower than 2–3 MW, the NO emissions decrease with thermal input. This decrease has been attributed to the solid-phase aerodynamics (particle trajectories). To obtain identical NO emissions in prototype experiments carried out at a thermal input lower than 1 MW, the constant residence time scaling would be recommended, and the pulverized fuel would have to be milled finer." @default.
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- W2016366751 date "1998-01-01" @default.
- W2016366751 modified "2023-09-25" @default.
- W2016366751 title "Scaling properties of swirling pulverized coal flames: From 180 kW to 50 MW thermal input" @default.
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- W2016366751 doi "https://doi.org/10.1016/s0082-0784(98)80155-0" @default.
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