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Optimization of a Pulverized Brown Coal Burner

机译:粉碎棕煤燃烧器的优化

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The paper describes the activities undertaken to improve the operation of a typical brown coal burner (firing about 35 t/h brown coal) used for the top fired 150 MW{sub}e Units of the Niederaus sem Power Plant of RWE Energie A.G.. In order to select the suitable burner modifications to improve the fuel burnout and reduce the NO{sub}X emissions a series of tests was performed in a model burner (of 250 kg/h firing capacity) at the 1.2 MW{sub}(th), pulverized coal research facility of RWE Energie KF/FS (R+D dept). The model burner was designed and constructed to simulate the operation of the typical industrial one taking into account the restrictions of applicability of the similarity analysis for the investigation of pulverized coal combustion. After a series of experiments where the different operating parameters were varied, the conclusions from 14 different flame investigations indicated that: -The effects of swirl on the early ignition and the burnout improvement are intensified when increasing the momentum ratio between the secondary and the primary stream at the burner's outlet. -On the specific burner configuration values of the a.m. momentum ratio higher than 1.4÷1.5 lead to improved burnout conditions and to the reduction of the CO emission without increasing the NO{sub}X emissions. The successful scaling of the model burner with respect to the original is proved from comparative measurements in the test facility and in the 150 MW{sub}e boiler. Concrete proposals were made for the industrial scale burner on the basis of these conclusions. The proposals were applied and tested successfully in a single burner and in all operating burners of a brown coal fired boiler in the Niederaussem power station.
机译:本文介绍了改善典型的棕色煤炭燃烧器的操作(射击大约35吨/小时煤)的活动,用于RWE Energie AG的Niederaus SEM电厂的顶部射击150 MW {Sub} E单元。在为了选择合适的燃烧器修改以改善燃料倦怠并减少NO {Sub} x排放一系列测试是在1.2 MW {Sub}(TH)的模型燃烧器(250千克/ H射击容量)中进行的测试,RWE Energie KF / FS(R + D Dept)的煤粉研究设施。设计和构建模型燃烧器以模拟典型工业的操作,考虑到相似性分析对粉煤燃烧调查的适用性的限制。经过一系列不同的操作参数的实验,来自14种不同的火焰调查的结论表明: - 在提高次级和主要流之间的动量比时,旋流对早期点火的影响和倦怠改善在燃烧器的出口。 - 响起A.M.动量比的特定燃烧器配置值高于1.4÷1.5导致改善倦怠条件,并在不增加NO {Sub} X排放的情况下降低CO发射。在测试设施和150mW {Sub} E锅炉中,证明了模型燃烧器相对于原始燃烧器的成功缩放。在这些结论的基础上,为工业规模燃烧器制造了具体提案。提案在单个燃烧器中成功应用和测试,并在Niederaussem发电站的棕色燃煤锅炉的所有操作燃烧器中进行了测试。

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