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Evaluation of the performance of a commercial circulating fluidized bed boiler by using IEA-CFBC model: Effect of primary to secondary air ratio

机译:使用IEA-CFBC模型评估商用循环流化床锅炉的性能:一次空气对二次空气的影响

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摘要

The performance of a commercial circulating fluidized bed boiler in the Yeosu thermal power plant, which has been operating since October 2011 by KOSEP, has been evaluated by using the IEA-CFBC model. To validate the calculation procedure of the model, the calculated results were compared with the operation values such as the temperatures, pressures, emissions of SO2 and NO, particles size distribution and unburned carbon fraction of the CFB boiler at a certain actual condition. The calculated results were comparable to measured values from the CFB boiler, so these could conform to acceptable formats with a good accuracy. The effect of the primary to secondary air ratio on the performance of the CFB boiler was also determined. As the primary air ratio increased, the solid fraction and temperature in the furnace freeboard increased. As a result, the solid circulation rate and the heat absorption in the furnace increased with increasing the PA ratio. In the case of the amount of heat absorption, the wall tube of the furnace absorbed much more generation heat in the furnace than the wing wall tube. The SO2 emission decreased due to increase of the limestone hold up in the furnace, and the combustion efficiency somewhat increased with increasing the PA ratio. Therefore, from these results, we could expect to control the boiler performance such as the furnace temperature, steam temperatures of superheater or reheater, gaseous emissions and combustion efficiency through the changing the PA ratio of the CFB boiler.
机译:丽水热电厂的商业循环流化床锅炉的性能已通过IEA-CFBC模型进行了评估,该锅炉自2011年10月起由KOSEP运营。为了验证模型的计算程序,将计算结果与在特定实际条件下的温度,压力,SO2和NO的排放量,CFB锅炉的粒度分布和未燃烧碳分数等运行值进行了比较。计算结果与CFB锅炉的测量值可比,因此这些结果可以符合可接受的格式,并具有良好的精度。还确定了一次空气与二次空气的比例对CFB锅炉性能的影响。随着一次空气比例的增加,炉内干馏部分的固体含量和温度也随之增加。结果,随着PA比的增加,炉内的固体循环速率和吸热率增加。就吸热量而言,炉子的壁管比翼形壁管吸收更多的炉内产生的热量。由于石灰石在炉中的滞留量增加,因此SO2排放量减少,并且燃烧效率随PA比的增加而有所提高。因此,根据这些结果,我们可以期望通过改变CFB锅炉的PA比来控制锅炉性能,例如炉温,过热器或再热器的蒸汽温度,气体排放和燃烧效率。

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  • 来源
    《Korean Journal of Chemical Engineering》 |2013年第5期|1058-1066|共9页
  • 作者单位

    Green Energy Laboratory Korea Electric Power Corporation (KEPCO) Research Institute">(1206);

    Green Energy Laboratory Korea Electric Power Corporation (KEPCO) Research Institute">(1206);

    Green Energy Laboratory Korea Electric Power Corporation (KEPCO) Research Institute">(1206);

    Green Energy Laboratory Korea Electric Power Corporation (KEPCO) Research Institute">(1206);

    Green Energy Laboratory Korea Electric Power Corporation (KEPCO) Research Institute">(1206);

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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