高参数机组深度调峰对水汽品质的影响研究An experimental study on the impact of deep peak load regulation on the water and steam quality of a high-parameter boiler
曹求洋,冯礼奎,田利,柯于进,施国忠,方湘瑜,吕洪坤
CAO Qiuyang,FENG Likui,TIAN Li,KE Yujin,SHI Guozhong,FANG Xiangyu,LYU Hongkun
摘要(Abstract):
以某600 MW亚临界汽包锅炉机组为对象,开展高参数机组深度调峰影响机组水汽品质的试验研究。试验结果表明:在深度调峰期间,精处理混床出现漏氯,混床出水氯离子含量4.38~30.12μg/L,炉水氯离子含量68.7~78.9μg/L,均高于标准值;凝结水、给水自动加氨系统调节滞后,给水及主蒸汽铁离子含量出现较大波动。因此,深度调峰对机组水汽品质有较为明显的影响,加速了机组热力系统的腐蚀。建议采取调整凝结水精处理混床运行工况、优化自动加氨系统控制参数以及调整给水处理工艺等措施减轻影响。
An experimental study on the impact of deep peak load regulation on the water and steam quality of a 600MW subcritical drum boiler was conducted. Experimental results indicate that during deep peak load regulation, there was chlorine leakage in the polishing mixed-bed. The chloride ion concentration in the mixed-bed outlet water ranged from 4.38 to 30.12 μg/L, and the chloride ion concentration in the boiler water ranged from 68.7 to 78.9 μg/L, both surpassing the standard values. Additionally, there were delayed adjustments in the automatic ammonia dosing system in the condensate and feedwater system and significant fluctuations in iron ion concentrations in feedwater and main steam. Therefore, deep peak load regulation has a pronounced impact on the water and steam quality of the boiler, hastening corrosion in its thermal system. The paper suggests taking measures to alleviate the impacts, such as adjusting the operating conditions of the condensate polishing mixed-bed, optimizing control parameters for the automatic ammonia dosing system, and modifying the feedwater treatment process.
关键词(KeyWords):
深度调峰;水汽品质;试验研究
deep peak load regulation;water and steam quality;experimental study
基金项目(Foundation): 中国华能集团总部科技项目(HNKJ21-HF305)
作者(Author):
曹求洋,冯礼奎,田利,柯于进,施国忠,方湘瑜,吕洪坤
CAO Qiuyang,FENG Likui,TIAN Li,KE Yujin,SHI Guozhong,FANG Xiangyu,LYU Hongkun
DOI: 10.19585/j.zjdl.202312015
参考文献(References):
- [1]王茂贵,吕洪坤,李剑.浙江省燃煤机组深度调峰综述[J].浙江电力,2019,38(5):90-97.WANG Maogui,LYU Hongkun,LI Jian.Review on deep peak regulation of coal-fired generating units in Zhejiang Province[J].Zhejiang Electric Power,2019,38(5):90-97.
- [2]喻心,王德林,孙超,等.不同调峰深度下火电机组的环境经济调度优化[J].太阳能学报,2023,44(6):152-160.YU Xin,WANG Delin,SUN Chao,et al.Environmental economic dispatch optimization of thermal power units at different peak-load regulation depths[J].Acta Energiae Solaris Sinica,2023,44(6):152-160.
- [3]冯伟忠,李励.“双碳”目标下煤电机组低碳、零碳和负碳化转型发展路径研究与实践[J].发电技术,2022,43(3):452-461.FENG Weizhong,LI Li.Research and practice on development path of low-carbon, zero-carbon and negative carbon transformation of coal-fired power units under “double carbon” targets[J].Power Generation Technology,2022,43(3):452-461.
- [4]甘益明,王昱乾,黄畅,等.“双碳”目标下供热机组深度调峰与深度节能技术发展路径[J].热力发电,2022,51(8):1-10.GAN Yiming,WANG Yuqian,HUANG Chang,et al.Development path of deep peak-shaving and deep energy conservation technology for cogeneration units with “dual carbon” target[J].Thermal Power Generation,2022,51(8):1-10.
- [5]王婧,杨金福,段立强,等.高参数超超临界燃煤机组汽轮机热力系统优化设计[J].发电技术,2021,42(4):480-488.WANG Jing,YANG Jinfu,DUAN Liqiang,et al.Optimal design of steam turbine system for advanced ultrasupercritical double reheat coal-fired units[J].Power Generation Technology,2021,42(4):480-488.
- [6]刘云锋,李宇峰,王健,等.汽轮机深度调峰的水蚀问题研究[J].发电技术,2021,42(4):473-479.LIU Yunfeng,LI Yufeng,WANG Jian,et al.Study on water erosion in deep peak shaving of steam turbine[J].Power Generation Technology,2021,42(4):473-479.
- [7]张少强,陈露,刘子易,等.大型燃煤锅炉深度调峰关键问题探讨[J].南方能源建设,2022,9(3):16-28.ZHANG Shaoqiang,CHEN Lu,LIU Ziyi,et al. Discussion on key problems of depth peak adjustment for large coal-fired boilers[J].Southern Energy Construction,2022,9(3):16-28.
- [8]贾朝晖.蒙西电网火电机组开展深度调峰工作的现状及重点[J].内蒙古电力技术,2002,20(2):1-3.JIA Zhaohui.Present situation and key points of deep peak shaving for thermal power units in Mengxi power grid[J].Inner Mongolia Electric Power,2002,20(2):1-3.
- [9]崔修强.超临界机组氧化皮机理分析及防治对策[J].中国设备工程,2019(12):112-114.CUI Xiuqiang. Mechanism analysis and prevention countermeasures of oxide scale in supercritical unit[J]. China Plant Engineering,2019(12):112-114.
- [10]赵晴川,董信光,张利孟,等.启停调峰及深度调峰对燃煤机组安全性影响分析[J].山东电力技术,2021,48(11):70-76.ZHAO Qingchuan,DONG Xinguang,ZHANG Limeng,et al.Analysis of influence of start-stop and deep peak shaving on the safety of coal-fired unit[J]. Shandong Electric Power,2021,48(11):70-76.
- [11]常伟,徐贤,魏然,等.煤电机组深度调峰对锅炉受热面管的影响[J].电力科技与环保,2022,38(6):458-466.CHANG Wei,XU Xian,WEI Ran,et al.Analysis of influence of deep peak shaving on heating surface tubes of coalfired power units[J].Electric Power Technology and Environmental Protection,2022,38(6):458-466.
- [12]张亚凯,毕虎才,王兴.某深度调峰机组水冷壁泄漏原因分析及预防[J].电站系统工程,2022,38(6):15-18.ZHANG Yakai,BI Hucai,WANG Xing. Cause analysis and prevention of water wall leakage in a depth peakregulating unit[J]. Power System Engineering,2022,38(6):15-18.
- [13]刘文胜,吕洪坤,童家麟,等.600 MW亚临界锅炉深度调峰动态试验研究[J].锅炉技术,2021,52(2):19-24.LIU Wensheng,LYU Hongkun,TONG Jialin,et al.Dynamic experimental study on deep peak loading for a 600MW sub-critical boiler[J]. Boiler Technology,2021,52(2):19-24.
- [14]罗晓明.300 MW汽轮机变负荷运行热经济性及安全性研究[J].汽轮机技术,2017,59(5):385-387.LUO Xiaoming.Safety and thermal economic analysis on variable load operation of 300 MW steam turbine[J].Turbine Technology,2017,59(5):385-387.
- [15]张希富,王运民,师保平,等.电厂汽轮机组变负荷运行安全经济性分析[J].汽轮机技术,2014,56(6):464-466.ZHANG Xifu,WANG Yunmin,SHI Baoping,et al.Safety and economic analysis on variable load operation of steam turbine unit in power plant[J].Turbine Technology,2014,56(6):464-466.
- [16]赵丽萍.深度调峰对热力系统化学监督的影响[J].内蒙古电力技术,2001,19(6):4-6.ZHAO Liping.Influence of deep peak shaving on chemical supervision of thermal system[J].Inner Mongolia Electric Power,2001,19(6):4-6.
- [17]火电厂水处理和水分析人员资格考核委员会,西安热工研究院有限公司.电力系统水处理培训教材[M].北京:中国电力出版社,2015.
- [18]韩怀明,袁景华.调峰机组化学问题处理[J].吉林电力,2001,29(4):31-35.HAN Huaiming,YUAN Jinghua. Treatment of chemical problems of peak shaving unit[J]. Jilin Electric Power,2001,29(4):31-35.
- [19]张澄信,陈志和.离子交换水处理试验研究原理[M].武汉:华中理工大学出版社,1997.
- [20]田利,石立斌,安雪松,等.电厂水汽中痕量TOC测量方法研究[J].热力发电,2013,42(9):92-94.TIAN Li,SHI Libin,AN Xuesong,et al.Test method for trace total organic carbon content in water vapor[J].Thermal Power Generation,2013,42(9):92-94.
- [21]戴鑫,田利,潘振波,等.痕量氯离子在线测量方法在电厂的应用[J].热力发电,2016,45(2):81-85.DAI Xin,TIAN Li,PAN Zhenbo,et al.An on-line measurement method of trace chlorine ion and its application in power plants[J].Thermal Power Generation,2016,45(2):81-85.
- [22]曹松彦,常旭红.离子色谱测试技术在电厂凝结水精处理系统中的应用[J].热力发电,2011,40(10):81-84.CAO Songyan,CHANG Xuhong.Application of ion chromatographic test technology in condensate polishing system[J].Thermal Power Generation,2011,40(10):81-84.
- [23]伊敏发电厂#4锅炉汽包缺陷造成汽轮机积盐原因分析及采取对策[C]//全国火电600 MW e级机组能效对标及竞赛第十四届年会论文集.昆明:[出版者不详],2010:592-595.