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CFD Evaluation of Waterwall Wastage in Coal-Fired Utility Boilers

机译:燃煤电站锅炉水冷壁浪费的CFD评估

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摘要

With the advent of substoichiometric low NO_x combustion in coal-fired utility boilers during recent years, problems with waterwall corrosion have increased. A predictive tool capable of assessing corrosion potential and aiding in the design of problem solutions could help alleviate the utility downtime and cost associated with waterwall wastage. Waterwall wastage has been associated with various mechanisms, including gaseous phase reducing sulfur species, wall deposition of unoxidized sulfur fuel, and fuel chlorine. Integration of predictive correlations for corrosion into a computational fluid dynamics (CFD) code can provide a framework for evaluation of corrosion potential. In this paper, CFD studies and predictions of corrosion in five utility boilers are examined and compared with observed wastage. The CFD code makes use of approximations of empirically developed corrosion correlations for gaseous phase reducing sulfur species, wall deposition of unoxidized sulfur fuel, and fuel chlorine. Model corrosion predictions are compared with observed or measured wastage in several coal-fired utility boilers, including tangentially fired, wall-fired, and cyclone-fired units.
机译:近年来,随着燃煤公用锅炉亚化学计量的低NO_x燃烧的出现,水冷壁腐蚀的问题越来越多。能够评估腐蚀潜能并帮助设计问题解决方案的预测工具可以帮助减少公用事业停工时间以及与水冷壁浪费相关的成本。水冷壁的浪费与各种机理有关,包括气相还原硫物种,未氧化硫燃料的壁沉积和燃料氯。将腐蚀的预测相关性集成到计算流体力学(CFD)代码中,可以为评估腐蚀潜能提供一个框架。在本文中,我们对五台公用锅炉的CFD研究和腐蚀预测进行了检查,并将其与观察到的浪费进行了比较。 CFD代码利用了经验开发的腐蚀相关性的近似值,用于气相还原硫物种,未氧化硫燃料的壁沉积和燃料氯。将模型腐蚀预测与在几种燃煤电站锅炉(包括切向燃烧,壁挂式和旋风燃烧式机组)中观察到的或测量到的浪费进行了比较。

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