首页> 外文会议>Proceedings of the 20th international conference on fluidized bed combustion(FBC) >3D-SIMULATION OF CONCENTRATION DISTRIBUTIONS INSIDE LARGE-SCALE CIRCULATING FLUIDIZED BED COMBUSTORS
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3D-SIMULATION OF CONCENTRATION DISTRIBUTIONS INSIDE LARGE-SCALE CIRCULATING FLUIDIZED BED COMBUSTORS

机译:大型循环流化床燃烧器内浓度分布的3D模拟

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摘要

With increasing size of modern CFB combustors the lateral mixing of fuels and secondary air gains more and more importance. Strong concentration gradients, which result from improper lateral mixing, can lead to operational problems, high flue gas emissions and lower boiler efficiencies. A 3D-model for the simulation of local gas and solids concentrations inside industrial-sized CFB boilers has been developed. The model is based on a macroscopic approach and considers all major mechanisms during fuel spreading and subsequent combustion of char and volatiles. Typical characteristics of modern boilers like staged combustion, a smaller cross-sectional area in the lower section of the combustion chamber and the co-combustion of additional fuels with coal can be considered. The 252 MWth combustor of Stadtwerke Duisburg AG is used for the validation of the model. A comprehensive picture of the local conditions inside the combustion chamber is achieved by the combination of local gas measurements and the three-dimensional simulation of concentration distributions.
机译:随着现代CFB燃烧器尺寸的增加,燃料和二次空气的横向混合越来越重要。由于横向混合不当而导致的浓浓度梯度会导致运行问题,烟气排放量增加以及锅炉效率降低。已经开发出了用于模拟工业规模CFB锅炉内部局部气体和固体浓度的3D模型。该模型基于宏观方法,并考虑了燃料散布以及随后的焦炭和挥发物燃烧的所有主要机理。可以考虑现代锅炉的典型特性,例如分段燃烧,燃烧室下部的横截面积较小以及附加燃料与煤的共燃烧。 Stadtwerke Duisburg AG的252兆瓦时燃烧室用于模型验证。通过局部气体测量和浓度分布的三维模拟相结合,可以获得燃烧室内局部条件的全面图像。

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