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600MW凝汽式机组熔盐储热系统设计及经济性分析

岳柏杨, 耿士敏, 程思远   

  1. 河北科技大学机械工程学院, 050018
  • 收稿日期:2025-09-25 修回日期:2025-11-18
  • 基金资助:
    国家自然科学基金项目(52206224); 河北省教育厅青年拔尖人才项目(BJK2024030)

Design and Economic Analysis of Molten Salt Thermal Storage System for 600MW Condensing Unit

  1. , 050018,
  • Received:2025-09-25 Revised:2025-11-18
  • Supported by:
    National Natural Science Foundation of China(52206224); Scientific Research Project of Colleges and Universities in Hebei Province(BJK2024030)

摘要: 为实现“双碳”目标下火电机组的深度调峰与灵活运行,提升大功率纯凝汽式机组的电网适应性,本文针对600MW凝汽式机组,开展熔盐储热系统的耦合设计与经济性分析,旨在提出一种兼顾调峰能力与热经济性的技术改造方案。基于EBSILON软件构建机组热力系统仿真模型,并验证其准确性。提出两种抽汽储热方案:方案一抽取再热蒸汽,方案二抽取主蒸汽。在额定工况下,以90MW储热负荷为基础,建立储热-释热耦合系统模型,从调峰容量、全厂热效率、绝对电效率、系统循环效率及工程适用性等五个维度进行对比分析。结合河北省峰谷电价政策,估算系统日均收益与静态投资回收期。仿真结果表明,方案一与方案二的调峰容量分别为38.85 MW与54.70 MW;系统循环效率分别为84.6%与60.1%;在典型峰谷电价下,方案一与方案二的日均净收益分别为9.81万元与7.05万元;静态投资回收期分别为2.08年与3.53年,方案一在系统循环效率、绝对电效率及经济性等方面表现更加优异。针对大功率凝汽式机组的熔盐储热改造,抽取再热蒸汽的方案在保证显著调峰能力的同时,具备更优的热经济性与更短的投资回收周期,综合性能更佳,可作为同类机组灵活性改造的推荐技术路线。

关键词: 凝汽机组, 灵活性改造, 熔盐储热, 600MW, 仿真模拟, 经济性分析

Abstract: In order to achieve the deep peak regulation and flexible operation of thermal power units under the "dual - carbon" goals and enhance the adaptability of high - power pure condensing units to the power grid, this paper focuses on a 600MW condensing unit and conducts a coupling design and economic analysis of a molten salt thermal energy storage system. The aim is to propose a technical transformation plan that takes into account both peak - shaving capabilities and thermal economy. Based on the EBSILON software, a simulation model of the unit's thermodynamic system is established, and its accuracy is verified. Two steam extraction and thermal energy storage schemes are put forward: Scheme 1 involves extracting reheated steam, and Scheme 2 involves extracting main steam. Under the rated operating conditions, with a thermal energy storage load of 90MW as the basis, a coupled model of thermal energy storage and release system is established. A comparative analysis is carried out from five aspects: peak - shaving capacity, overall plant thermal efficiency, absolute electrical efficiency, system cycle efficiency, and engineering applicability. Combined with the peak - valley electricity price policy in Hebei Province, the average daily revenue and static investment payback period of the system are estimated. The simulation results show that the peak - shaving capacities of Scheme 1 and Scheme 2 are 38.85 MW and 54.70 MW, respectively; the system cycle efficiencies are 84.6% and 60.1% respectively. Under typical peak - valley electricity prices, the average daily net revenues of Scheme 1 and Scheme 2 are 98,100 yuan and 70,500 yuan respectively; the static investment payback periods are 2.08 years and 3.53 years respectively. Scheme 1 demonstrates more excellent performance in terms of system cycle efficiency, absolute electrical efficiency, and economy. Regarding the molten salt thermal energy storage transformation of high - power condensing units, the scheme of extracting reheated steam can ensure significant peak - shaving capabilities while possessing better thermal economy and a shorter investment payback period. With better comprehensive performance, it can be recommended as a technical route for the flexibility transformation of similar units.

Key words: condensing unit, flexibility transformation, molten salt thermal storage, 600MW, simulation, economic analysis