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Modelling and experimental validation of a fluidized bed reactor freeboard region: application to natural gas combustion

机译:流化床反应器干舷区域的建模和实验验证:在天然气燃烧中的应用

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摘要

A theoretical and experimental study of natural gas-air mixture combustion in a fluidized bed of sand particles is presented. The operating temperatures are lower than a critical temperature of 800 °C above which the combustion occurs in the vicinity of the fluidized bed. Our study focusses on the freeboard zone where most of the methane combustion takes place at such temperatures. Experimental results show the essential role of the projection zone in determining the global thermal efficiency of the reactor. The dense bed temperature, the fluidizing velocity and the mean particle diameter significantly affect the thermal behaviours. A model for natural gas-air mixture combustion in fluidized beds is proposed, counting for interactions between dense and dilute regions of the reactor [Pré et al. (1998)] supplemented with the freeboard region modelling of Kunii-Levenspiel (1990). Thermal exchanges due to the convection between gas and particles, and due to the conduction and radiation phenomena between the gas-particle suspension and the reactor walls are counted. The kinetic scheme for the methane conversion is that proposed by Dryer and Glassman (1973). Model predictions are in good agreement with the measurements.
机译:提出了在砂粒流化床中天然气-空气混合物燃烧的理论和实验研究。工作温度低于800°C的临界温度,在该临界温度以上,流化床附近发生燃烧。我们的研究集中在干舷区,在该干舷区,大部分甲烷燃烧都是在这样的温度下发生的。实验结果表明,投影区在确定反应堆的整体热效率中起着至关重要的作用。浓密的床温,流化速度和平均粒径显着影响热性能。提出了一种在流化床中燃烧天然气-空气混合物的模型,该模型计算了反应堆稠密和稀薄区域之间的相互作用[Préet al。 (1998)]补充了Kunii-Levenspiel(1990)的干舷区域模型。计算由于气体和颗粒之间的对流以及由于气体颗粒悬浮液和反应器壁之间的传导和辐射现象而引起的热交换。甲烷转化的动力学方案是Dryer和Glassman(1973)提出的。模型预测与测量结果非常吻合。

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