中国电力 ›› 2014, Vol. 47 ›› Issue (3): 59-64.DOI: 10.11930/j.issn.1004-9649.2014.3.59.5

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低NOx燃烧技术改造对切圆燃烧锅炉热量分配的影响

靳允立   

  1. 西门子电站自动化有限公司,江苏 南京 211100
  • 收稿日期:2013-12-21 出版日期:2014-03-31 发布日期:2015-12-18
  • 作者简介:靳允立(1976-),男,江苏徐州人,工学硕士,工程师,从事电站控制系统逻辑设计与机组性能优化研究。E-mail: nuaajyl@sina.com

Influence of Low NOx Combustion Technology Reformation on Tangentially-Fired Boiler Heat Distribution

JIN Yun-li   

  1. Siemens Power Plant Automation Ltd., Nanjing 211100, China
  • Received:2013-12-21 Online:2014-03-31 Published:2015-12-18

摘要: 基于调试和试验数据,对切圆燃烧锅炉低NOx燃烧技术改造后存在的锅炉主、再热汽温偏低的问题进行了分析。结果表明:低NOx燃烧技术改造后,锅炉主、再热汽温偏低主要是由锅炉热量分配向水冷壁区前移引起;前移原因是由于新增SOFA风加大了燃尽区氧量,导致燃烧速率随氧量增加大幅提高;同时SOFA风分流作用,也使主燃区由燃烧速率随氧量平缓变化区间转入快速变化区间;低NOx燃烧技术改造后主燃区和燃尽区同时处在燃烧速率随氧量快速变化区间,使得氧量变化会对锅炉热量分配产生明显影响,导致汽温、汽压、汽包水位等参数出现大幅波动。

关键词: 切圆燃烧锅炉, 低NOx燃烧技术, 热量分配, 燃烧速率, 汽温

Abstract: Based on debugging and testing data, the issues of low main steam temperature and low reheat steam temperature existing in the tangentially-fired boilers after low NOx combustion reform are analyzed, which concludes that the boiler heat distribution moving towards the water walls after the reform is the main cause for the excessively low main steam and reheat steam temperatures. Moreover, the heat distribution shifting is caused by the new separated over-fire air(SOFA) that increases the oxygen content of burn-out zone, leading to a significant rise of burning rate. Meanwhile the secondary air flow redistribution caused by SOFA makes the burning rate in the primary combustion zone shift from smooth change to rapid change with oxygen content. After the reformation of low NOx combustion technology, the primary combustion zone and the burn-out zone both lie in the rapidly changing range of the burning rate with oxygen content. In this range, the change of oxygen content will have significant effect on boiler heat distribution, and consequently, some key parameters including the steam temperature and pressure and the water level in the drum fluctuates widely.

Key words: tangentially-fired boiler, low NOx combustion technology, heat distribution, burning rate, steam temperature

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