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梯级火储集成系统设计及其调频基础研究

丁煊涛 范庆伟

热力发电2026,Vol.55Issue(2):108-116,9.
热力发电2026,Vol.55Issue(2):108-116,9.DOI:10.19666/j.rlfd.202508050

梯级火储集成系统设计及其调频基础研究

Design of a cascaded thermal-storage-integrated system and fundamental research on its frequency-regulation performance

丁煊涛 1范庆伟2

作者信息

  • 1. 北方联合电力有限责任公司,内蒙古 呼和浩特 010000
  • 2. 西安热工研究院有限公司,陕西 西安 710054
  • 折叠

摘要

Abstract

[Objective]Driven by the global energy transition and the"dual-carbon"goals,enhancing the operational flexibility of coal-fired units has become pivotal for improving the grid's renewable energy accommodation capacity.To enhance the frequency-regulation flexibility of coal-fired units and address the pinch-point bottleneck in molten-salt/steam heat exchange,this study proposes a three-tank cascaded thermal energy storage(TES)system integrated with a subcritical unit.[Methods]A steady-state model of a 330 MW unit was developed in EBSILON.It incorporated high-,intermediate-,and low-temperature molten-salt loops,and achieved partial boiler-turbine decoupling via main-steam and feedwater bypass circuits.[Results]The simulation results indicate that the cycle electric efficiency reached 63.51%at 100%THA;the heat rate increase of the integrated system was about 1%in hot standby working state of each working condition,and 13.2%at 40%THA with a 5%Pe regulation depth;the coal consumption penalty grew exponentially with regulation depth,providing a basis for defining an economic dead band.[Conclusion]The cascaded TES structure preserves steam exergy while significantly improving load-response rate and frequency-regulation capability,offering both theoretical insights and a practical design paradigm for flexibility retrofits of coal-fired units in power systems with high renewable penetration.

关键词

熔盐储热系统/灵活性改造/储能/换热夹点/EBSILON建模仿真

Key words

molten-salt thermal energy storage system/flexibility retrofitting/energy storage/heat-exchange pinch point/EBSILON-based modelling and simulation

引用本文复制引用

丁煊涛,范庆伟..梯级火储集成系统设计及其调频基础研究[J].热力发电,2026,55(2):108-116,9.

热力发电

1002-3364

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