首页> 外文会议>International Technical Conference on Coal Utilization Fuel Systems >CFD EVALUATION OF OXYGEN ENHANCED COMBUSTION: IMPACTS ON NO_x EMISSIONS, CARBON-IN-FLYASH AND WATERWALL CORROSION
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CFD EVALUATION OF OXYGEN ENHANCED COMBUSTION: IMPACTS ON NO_x EMISSIONS, CARBON-IN-FLYASH AND WATERWALL CORROSION

机译:氧气增强燃烧的CFD评估:对NO_X排放,碳粉碎机和水墙腐蚀的影响

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This paper discusses the results of a Computational Fluid Dynamics (CFD) based evaluation of the impact of oxygen enhanced combustion in a subcritical wall-fired pulverized coal (PC) utility boiler. Praxair has previously demonstrated through pilot-scale and full-scale burner testing that significant reductions in NO_x emissions can be obtained through oxygen enhancement in low-NO_x burners. CFD modeling conducted by Reaction Engineering International (REI) has predicted that similar reductions of NO_x emissions can be obtained in full-scale boilers equipped with low-NO_x firing systems. As with any low-NO_x combustion technology, it is important to evaluate not only the impact on NO_x emissions, but also the potential for increased rates of waterwall wastage and unburned carbon in the fly ash. CFD modeling has been used to evaluate these impacts in a 180 MW front wall fired boiler equipped with low-NO_x burners and overfire air. Waterwall wastage involving both gas phase and particle phase corrosion mechanisms has been considered. The predictions have indicated that oxygen enhancement for NO_x control in this unit will likely result in unchanged rates of waterwall corrosion under low-NO_x firing conditions as compared to the case of no oxygen enhancement, and potentially reduced waterwall surface area subject to high rates of corrosion. Predictions of unburned carbon in the fly ash indicate that operation under low-NO_x firing conditions with oxygen enhancement will likely have a beneficial effect.
机译:本文讨论了基于计算流体动力学(CFD)对亚临界壁式煤粉(PC)公用事业锅炉的氧气增强燃烧的影响的评价的结果。 Praxair先前通过先导和全刻度燃烧器测试证明,通过低NO_X燃烧器中的氧气增强,可以通过氧气增强来获得NO_X排放的显着减少。反应工程国际(REI)进行的CFD建模已经预测,可以在配备低NO_X射击系统的全尺度锅炉中获得类似的NO_X排放的相似减少。与任何低No_X燃烧技术一样,不仅对NO_X排放的影响很重要,而且还是粉煤灰中的水墙浪费和未燃烧的碳速率提高的潜力。 CFD模拟已经被用于评估在180 MW前壁这些影响燃烧锅炉配有低NO_x的燃烧器和过热空气。考虑了涉及气相和粒子相腐蚀机制的水墙浪费。预测表明,与NO氧气增强的情况相比,该装置中NO_X控制的氧气增强可能导致低NO_X烧制条件下的水壁腐蚀的速率不变,并且可能降低水坑表面区域经受高腐蚀速率的影响。粉煤灰中未燃烧的碳的预测表明,低NO_X烧制条件下的氧气增强的操作可能具有有益的效果。

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