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Co-combustion Characteristics of Low- and Medium-Rank Coal of the Circulating Fluidized Bed Boiler Coal Power Plant

机译:循环流化床锅炉煤发电厂低级煤的共燃烧特性

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Co-combustion testing of Low-Rank Coal (LRC) and Medium-Rank Coal (MRC) was carried out in a Circulating Fluidized Bed (CFB) Boiler with a capacity of 16.5 MWe to determine the effects on the performance and characteristics of operational boiler parameters. Coal was initially divided in two different bunkers based on its quality. The big bunker was filled with LRC and the smaller one was filled with MRC. To observe further impact on boiler performance, four different flow ratio percentages were set up through the coal feeder. We found that increasing the MRC ratio contributed to the rising furnace bed and inlet cyclone temperature. This also positively affected the boiler efficiency with the highest value of 86.77 % with full of MRC. However, the co-combustion caused drawbacks due to inhomogeneous temperature distribution within those furnaces. The average bed temperature ranged from 974 0C to 1,000 0C. The Net Plant Heat Rate (NPHR) increased slightly by 3.95 % of the original fuel design.
机译:低级煤(LRC)和中等煤(MRC)的共燃烧试验在循环流化床(CFB)锅炉中进行,容量为16.5 mWE,以确定对运营锅炉性能和特性的影响参数。煤炭最初基于其质量分为两种不同的地堡。大掩体充满了LRC,较小的碉堡充满了MRC。要观察到锅炉性能的进一步影响,通过煤料进料器建立了四种不同的流量比例。我们发现增加MRC比率导致上升炉床和入口旋风温度。这也在充满MRC的最高值为86.77%的锅炉效率影响锅炉效率。然而,共燃烧引起的缺点由于在这些炉内的不均匀温度分布而导致缺点。平均床温度范围为974 0 c到1,000 0 C.净植物热速率(NPHR)略微增加了原始燃料设计的3.95%。

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