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- W2060879459 abstract "The main factors limiting combustion intensity in practical solid or liquid fuel systems are macro and micro mixing of fuel and air, heating the incoming fuel and heat loss from the flame. Micro mixing leads to a combustion time proportional to the square of the initial particle or droplet diameter so that fineness of grinding or atomization is the prime essential. In grate firing the high relative velocity of gas and particle can give a much greater rate of micro mixing and the particles remain in the combustion chamber until they are consumed. Macro mixing can be predicted from isothermal models in the three cases of the high velocity fuel jet, the large preheated gaseous fuel jet and the low Reynolds number heating flue - the geometrical distortion to allow for the density change on combustion is different in the three cases. The first case which corresponds to the liquid fuel fired open hearth steel-melting flame has been extensively studied to throw considerable light on the optimum design. Models can also be used for predicting the erosion of walls, the distribution of fuel residence times and the effect of buoyancy. A method of calculating the heat transfer rate from various flames in the open hearth furnace is providing a link between the model work, and flame radiation measurements and practical operation." @default.
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- W2060879459 date "1957-03-01" @default.
- W2060879459 modified "2023-10-17" @default.
- W2060879459 title "Some recent developments in the physics of fuel combustion" @default.
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- W2060879459 doi "https://doi.org/10.1088/0508-3443/8/3/301" @default.
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