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Numerical Simulation of OFA Effect on the Three-Dimensional Flow Field in Supercritical W-Shaped Flame Boiler

机译:OFA对超临界W形火焰锅炉三维流场影响的数值模拟

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Supercritical W-flame boiler opens up a new way for improving power generation efficiency with low-volatile poor-quality anthracite coal, owing to its good characteristics of high thermal efficiency, environmental and energy-saving. The numerical simulation of the formation of three-dimensional W-shaped flow field of a 600MW supercritical W-shaped flame boiler was implemented by software fluent 6.3. The effect of over fire air (OFA) on flow field in the furnace was also studied. The results indicate that the formation of two pairs of double-vortexes flow structure in the furnace can enhance the heat transfer and mass transfer of pulverized coal flow. The vortexes can also increase the residence time of pulverized coal particle in the combustion chamber and be in favor of the burnout of pulverized coal. The structure of OFA on the arch can effectively reduce the erosion effect of the flue gas of pulverized coal on the throat area, the front wall and the rear wall. The structure of OFA also is good at avoiding slagging. The flow field will not be best if the ratio of OFA is too large or too small, an optimal ratio of air distribution exists for a W-shaped flame boiler. The study results have great significance for the optimization design and improving the efficiency of pulverized coal combustion of supercritical W-shaped flame boiler.
机译:超临界W火焰锅炉具有热效率高,环保节能的特点,开辟了一种利用挥发性低劣劣质无烟煤提高发电效率的新途径。利用fluent 6.3软件对600MW超临界W形火焰锅炉三维W形流场形成进行了数值模拟。还研究了过火空气(OFA)对炉内流场的影响。结果表明,在炉内形成两对双涡流结构可以增强煤粉流的传热和传质。涡流还可以增加煤粉在燃烧室中的停留时间,有利于煤粉的燃尽。拱上的OFA结构可有效降低粉煤烟道对喉部区域,前壁和后壁的腐蚀作用。 OFA的结构也擅长避免结渣。如果OFA的比例太大或太小,流场将不是最佳的,对于W形火焰锅炉,存在最佳的空气分配比。研究结果对优化设计,提高超临界W型火焰锅炉粉煤燃烧效率具有重要意义。

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