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Dynamics of furnace processes in a CFB boiler

机译:CFB锅炉中炉子过程的动力学

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摘要

With the aim of understanding the dynamics of combustion, this work examines simultaneous fluctuations in fluid dynamic parameters and gas composition measured in a CFB furnace operated with coal as a fuel. The fluid dynamic parameters investigated are pressure and air flow entering the furnace. Gas composition was recorded by a zirconia-cell probe and a gas suction probe connected to a mass spectrometer having a high time resolution (10 Hz). The principal fluctuations detected are around I Hz and below 0.3 Hz. The fluctuations below 0.3 Hz mostly originate from variations in the fuel-feed rate. These variations create periods of reducing conditions caused by a momentarily high fuel input accompanied by a pressure rise in the furnace and a reduction of the air feed, which occurs concurrent with the release of an enhanced quantity of volatiles. Modelled pressure fluctuations based on the relation between volatile release and pressure in the furnace give similar pressure fluctuations as the measured pressure fluctuations, with respect to amplitude and characteristic time scale of the fluctuations. There is also a correlation between reducing conditions and the concentration of hydrocarbons. (c) 2006 Elsevier Ltd. All rights reserved.
机译:为了理解燃烧动力学,这项工作研究了在以煤为燃料的CFB炉中测得的流体动力学参数和气体成分的同时波动。研究的流体动力学参数是进入炉子的压力和空气流量。通过氧化锆电池探针和与具有高时间分辨率(10Hz)的质谱仪连接的吸气探针记录气体成分。检测到的主要波动约为1 Hz,低于0.3 Hz。低于0.3 Hz的波动主要源于燃油进给速度的变化。这些变化产生了减少条件的周期,这些条件是由于瞬间高的燃料输入量,伴随着炉内压力的升高和空气进料量的减少而发生的,这与释放出大量的挥发物同时发生。基于波动的幅度和特征时间标度,基于挥发物释放与炉中压力之间的关系建模的压力波动给出了与测得的压力波动相似的压力波动。还原条件与烃浓度之间也存在相关性。 (c)2006 Elsevier Ltd.保留所有权利。

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