首页> 外文会议>International Conference on Fluidized Bed Combustion; 20050522-25; Toronto(CA) >Gas concentration measurements in the combustion chamber of the 235 MWe circulating fluidized bed boiler Turow no. 3
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Gas concentration measurements in the combustion chamber of the 235 MWe circulating fluidized bed boiler Turow no. 3

机译:235 MWe循环流化床锅炉Turow no。的燃烧室中的气体浓度测量。 3

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Local measurements of concentrations of O_2, CO_2, CO, NO and SO_2 were carried out inside the 235 MWe circulating fluidized bed boiler no. 3 Turow power plant. The combustion chamber had a cross-sectional area of 21.1 x 9.9 m~2 and a height of 43 m. Water-cooled probes with a length of 4.7 m were used to take samples from inside the boiler. 20 ports in 5 different heights were used to introduce the probes. The penetration depth inside the boiler was up to 3 m. The sampled gas was led to online analyzers. Even though the number of ports and the penetration length was not sufficient to get a full 3-D mapping of the concentrations the measured horizontal and vertical gas concentration profiles of NO, CO, CO_2, O_2 and SO_2 clearly indicate a core/annulus structure with a wall layer thickness of about 0.5 -1m. Significant differences are observed between gas concentrations near the front wall and those near the rear wall which indicate an uneven distribution of fuel. One consequence is the formation of plumes with high concentrations of CO, NO, CO_2 and SO_2 near the front wall which extend up to the exit region. The fact that nevertheless the stack emissions are still below the legal limits may be attributed to the excellent performance of the cyclones as gas mixers and post combustion reactors.
机译:在235 MWe循环流化床锅炉No.1中对O_2,CO_2,CO,NO和SO_2的浓度进行了局部测量。 3 Turow发电厂。燃烧室的横截面积为21.1 x 9.9 m〜2,高度为43 m。长度为4.7 m的水冷探头用于从锅炉内部取样。 5个不同高度的20个端口用于引入探针。锅炉内部的穿透深度高达3 m。采样气体被导入在线分析仪。即使端口数量和穿透长度不足以获取浓度的完整3D映射图,NO,CO,CO_2,O_2和SO_2的水平和垂直气体浓度分布图也清楚地表明了核/环空结构壁厚约0.5 -1m。在前壁附近和后壁附近的气体浓度之间观察到显着差异,这表明燃料分布不均。一种结果是在前壁附近形成了高浓度的CO,NO,CO_2和SO_2的羽流,这些羽流一直延伸到出口区域。然而,烟囱排放仍低于法律限制的事实可能归因于旋风分离器作为气体混合器和后燃烧反应器的出色性能。

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