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The innovative design of air caps for improving the thermal efficiency of CFB boilers

机译:用于提高CFB锅炉热效率的空气帽的创新设计

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Air caps are an effective way of ensuring uniformity of air flow in Circulating Fluidized Bed (CFB) boilers. Published literature on the design and configuration of these air caps is severely limited. In this study, extensive theoretical as well as experimental investigations have been carried out to design novel air caps in order to improve efficiency of CFB boilers. A small-scale test bench of 220 t/h CFB boiler has been developed, integrated with novel air caps. It has been observed that inhomogeneity in air flow velocity decreases from 65.79% to 21.25%, while the pressure drop decreases by 20%. A mathematic model of air caps has been derived and its accuracy verified through cold tests. Two empirical correlations for calculating the pressure drop and the air jet penetration length of the novel air caps have been obtained and verified. Finally, in order to validate the innovative design of air caps, this methodology has been implemented to a full-scale 220 t/h CFB boiler. The hot test results depict that the thermal efficiency of the boiler has increased from 86.4% to 91.8% when tested with the novel air caps in-place, which is equivalent to a saving of 6000 tons of coal per year.(c) 2021 Elsevier Ltd. All rights reserved.
机译:空气帽是确保在循环流化床(CFB)锅炉中的空气流均匀性的有效方法。这些空气帽的设计和配置的出版文献受到严重限制。在这项研究中,已经进行了广泛的理论和实验研究,以设计新的空气盖,以提高CFB锅炉的效率。已经开发出220T / H CFB锅炉的小规模测试台,与新型空气帽一体化。已经观察到空气流速的不均匀性从65.79%降低至21.25%,而压降降低20%。通过冷测试来推导出一种空气帽的数学模型,其精度验证。已经获得并验证了用于计算压降和新型空气帽的空气喷射渗透长度的经验相关性。最后,为了验证空气帽的创新设计,该方法已经实现为全尺寸220 T / H CFB锅炉。热试验结果描绘了锅炉的热效率,当用新的空气帽进行测试时,锅炉的热效率从86.4%增加到91.8%,这相当于每年节省6000吨煤炭。(c)2021 Elsevier有限公司保留所有权利。

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