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连续蓄热燃烧技术在固体燃料加热炉应用探索
张建军; 张旭; 冯自平; 杨承志
2014
Source Publication热能动力工程
ISSN1001-2060
Volume29Issue:2Pages:187
Abstract根据固体燃料燃烧的特点及高温空气燃烧技术原理,对连续蓄热燃烧技术在固体燃料加热炉上的应用进行了探索。搭建连续式蓄热固体燃料实验装置,对炉膛温度、烟气温度及助燃空气温度等参数进行测量分析,排烟温度可以控制在150 ℃以下,助燃空气预热温度低于高温烟气温度约100 ℃。当助燃空气预热温度波动30 ℃左右时,炉膛温度波动不高于3℃,可以满足多种加热工艺对加热精度的要求。测试结果表明,连续式高温空气燃烧技术可以应用在固体燃料加热炉上,通过对其烟气余热最大限度的回收,拓展了蓄热燃烧技术的应用领域。
Language英语
Document Type期刊论文
Identifierhttp://ir.giec.ac.cn/handle/344007/20350
Collection中国科学院广州能源研究所
Affiliation中国科学院广州能源研究所
First Author AffilicationGuangZhou Institute of Energy Conversion,Chinese Academy of Sciences
Recommended Citation
GB/T 7714
张建军,张旭,冯自平,等. 连续蓄热燃烧技术在固体燃料加热炉应用探索[J]. 热能动力工程,2014,29(2):187.
APA 张建军,张旭,冯自平,&杨承志.(2014).连续蓄热燃烧技术在固体燃料加热炉应用探索.热能动力工程,29(2),187.
MLA 张建军,et al."连续蓄热燃烧技术在固体燃料加热炉应用探索".热能动力工程 29.2(2014):187.
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