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Full-scale CFD investigation of gas-particle flow, interactions and combustion in tangentially fired pulverized coal furnace

机译:切向燃烧煤粉炉中气体颗粒流动,相互作用和燃烧的全面CFD研究

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Investigations suggest the need for better understanding of reactive gas-particle turbulent flow phenomena in full-scale energy systems. Numerical study was done in 350 MWe utility boiler tangentially fired furnace to clarify selected issues, such as turbulence modulation, particles dispersion, energy transfer between phases, combustion process and flame, by using an in-house developed combustion code. Numerical experiments demonstrated remarkable complexity of flow and interphase exchange. Maximal decrease in average turbulence kinetic energy of 33% due to dispersed phase was predicted for representative monodispersed coal; augmentation obtained for large particles could become attenuation due to the particles size change during combustion. Grinding fineness of polydispersed coal affected the flow, combustion and flame considerably. Fine grinding (R-90 = 48.40%) provided ascending flame, higher furnace exit temperature and decrease in turbulence energy, compared with coarse grinding (R-90 = 73.85%). Combustion of each particle size class of coal is completed at different vertical levels, influencing the flame position. Diagrams based on numerical predictions were proposed to enable efficient estimations of combustion and flame characteristics in the case-study furnace, for various coal qualities and mass fractions and changed distributions of coal particle size classes over the burner tiers, while necessity for further investigation was pointed out as well. (C) 2019 Elsevier Ltd. All rights reserved.
机译:研究表明,需要更好地了解全尺寸能源系统中的反应性气体颗粒湍流现象。通过使用内部开发的燃烧规范,在350 MWe实用锅炉切向燃烧炉中进行了数值研究,以阐明选定的问题,例如湍流调制,颗粒扩散,相之间的能量传递,燃烧过程和火焰。数值实验证明了流动和相间交换的显着复杂性。对于代表性的单分散煤,预计由于分散相,平均湍流动能最大降低了33%。由于燃烧过程中粒径的变化,大颗粒的增强作用可能会衰减。多分散煤的研磨细度极大地影响了流动,燃烧和火焰。与粗磨(R-90 = 73.85%)相比,细磨(R-90 = 48.40%)提供了上升的火焰,更高的炉膛出口温度和湍流能量的降低。每种粒度级别的煤都在不同的垂直高度燃烧,从而影响火焰位置。提出了基于数值预测的图表,以便能够对案例研究炉中的各种煤质和质量分数以及燃烧器各层中煤粒度等级的变化分布进行有效的燃烧和火焰特性估算,同时指出了进一步研究的必要性以及。 (C)2019 Elsevier Ltd.保留所有权利。

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