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Numerical simulation of a decoupling and Re-burning combinative Low-NOx coal grate boiler

机译:解耦再燃联合低NOx炉排锅炉的数值模拟

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A two-dimensional computational fluid dynamic model was developed to simulate the combustion process and nitrogen oxides formation of a 1.5 MW decoupling and re-burning combinative low-nitrogen oxides coal grate boiler to facilitate the design. FLUENT coal calculator was used for the combustion of over bed coal volatiles, along with the post-process nitrogen oxides formation. By comparing the combustion and pollutants emission of several designs, the nitrogen oxides emission and stable combustion effects of the new grate boiler were investigated. The effects of different boiler length and different pyrolysis gas injection sizes were analyzed to optimize the boiler structure. The computational results were found to match well with experimental data. Results showed that the decoupling and re-burning combinative technique gave considerable improvements in combustion efficiency and nitrogen oxides reduction and has excellent potential for future application. The optimization work revealed that a furnace arch length of 1.5 m and injecting the pyrolysis gas through the small hole on front wall of the furnace may be considered as a comparatively well-organized mode. Meanwhile, the results showed that a variety of factors, such as the disturbance intensity, air/coal ratio in the combustion zone, mixing zone size of the pyrolysis gas and main flow, etc., can significantly affect combustion efficiency and nitrogen oxides emissions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:建立了二维计算流体动力学模型,以模拟1.5 MW解耦和再燃组合低氮氧化物煤g石锅炉的燃烧过程和氮氧化物的形成,以简化设计。 FLUENT煤计算器用于燃烧床上方的煤挥发物,以及后处理过程中形成的氮氧化物。通过比较几种设计的燃烧和污染物排放,研究了新型炉排锅炉的氮氧化物排放和稳定燃烧效果。分析了不同锅炉长度和不同热解气注入量的影响,以优化锅炉结构。计算结果与实验数据非常吻合。结果表明,解耦再燃组合技术在燃烧效率和减少氮氧化物方面有相当大的提高,并具有广阔的应用前景。优化工作表明,将炉拱长度为1.5 m并通过炉前壁上的小孔注入热解气体可被认为是一种组织良好的模式。同时,结果表明,扰动强度,燃烧区的空燃比,热解气与主流的混合区大小等多种因素均可显着影响燃烧效率和氮氧化物的排放。 (C)2018 Elsevier Ltd.保留所有权利。

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