华电技术 ›› 2020, Vol. 42 ›› Issue (12): 60-66.

• 供热改造 • 上一篇    下一篇

中小型煤电机组低压缸零功率供热改造技术应用分析

  

  1. 中国中煤能源集团有限公司,北京 100120
  • 出版日期:2020-12-25 发布日期:2021-01-04

Analysis on application of low-pressure cylinder zero-output heating transformation technology in small and medium-sized coal-fired power units

  1. China National Coal Group Corporation,Beijing 100120,China
  • Online:2020-12-25 Published:2021-01-04

摘要: 为响应国家节能减排政策、满足区域供热需求及适应煤电灵活性调峰新兴市场盈利模式,以山西晋北地区某135 MW燃煤机组低压缸零功率改造项目为例,对低压缸零功率改造技术在中小型煤电机组实现热电解耦,扩大供热能力、提高机组灵活性方面的应用加以分析。分析表明:中小型煤电机组实施低压缸零功率供热改造后,机组在动叶水蚀、叶片喘振、鼓风发热和空冷岛防冻等方面均处于安全可控状态;机组实施低压缸零功率改造方案具有明显优势和运行经济性,总投资减少约55万元,增加发电收益7 023 万元。可为同类型机组改造设计提供参考。

关键词: 供热改造, 低压缸零功率, 热电解耦, 空冷岛, 光轴, 节能减排, 区域供热, 调峰

Abstract: In respond to the energy conservation and emission reduction policy,and to meet the local heating demand and adapt to the emerging profit model of flexible peak shaving for coal-fired power plants,a low-pressure cylinder zero-output transformation was taken on a 135 MW coal-fired unit in northern Shanxi Province.The low-pressure cylinder zero-output technology can realize thermo-electric decoupling in small and medium-sized coal-fired power units,and its performance on improving heating capacity and flexibility of the units was analyzed.The results show that low-pressure cylinder zero-output transformation makes small and medium-sized coal-fired power units safe and controllable since it can solve rotor blade water erosion,blade surging,heating of blast and freezing prevention of air-cooled island.The low-pressure cylinder zerooutput scheme is of prominent economic advantage,as it reduces the total investment by about 550 000 yuan,and increases the power generating capacity and income per heating season by about 70.23 million yuan,respectively.The conclusion can be used as a reference for the design of similar units.

Key words: heating transformation, low-pressure cylinder zero-output technology, thermo-electric decoupling, air cooling island, smooth shaft, energy saving and emission reduction, district heating, peak-load regulation