Flexible Operation of Supercritical Power Plant via Integration of Thermal Energy Storage

Decai Li, Wenbin Zhang, Jihong Wang
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引用次数: 2

Abstract

This chapter presents the recent research on the various strategies for power plant flexible operations to meet the requirement of load balance. The aim of this study is to investigate whether it is feasible to integrate the Thermal Energy Storage (TES) with the thermal power plant steam-water cycle. Optional thermal charge and discharge locations in the cycle have been proposed and compared. Dynamic modelling and simulations have been carried out to demonstrate the capability of TES integration in supporting the flexible operation of the power plant. The simulation software named SimuEngine is adopted and a 600 MW supercritical coal-fired power plant model is implemented onto the software platform. Three TES charging strategies and two TES discharging strategies are proposed and verified via the simulation platform. The simulation results show that it is feasible to extract steam from steam turbines to charge the TES and to discharge the stored thermal energy back to the power generation processes. The improved capability of the plant flexible operation is further studied in supporting the responses to the grid load demand changes. The results demonstrated that the TES integration has led to much faster and more flexible responses to the load demand changes.
基于蓄热一体化的超临界电厂柔性运行
本章介绍了电厂为满足负荷平衡要求而采取的各种灵活运行策略的最新研究进展。本研究的目的是探讨热能储存(TES)与火电厂蒸汽-水循环整合是否可行。提出并比较了循环中可选择的热充放电位置。进行了动态建模和仿真,以证明TES集成在支持发电厂灵活运行方面的能力。采用仿真软件SimuEngine,在软件平台上实现了600mw超临界燃煤电厂模型。提出了三种TES充电策略和两种TES放电策略,并通过仿真平台进行了验证。仿真结果表明,从汽轮机中提取蒸汽给TES充电,并将储存的热能放回发电过程是可行的。进一步研究了电厂灵活运行能力的提高,以支持电网负荷需求变化的响应。结果表明,与TES集成后,电网对负荷需求变化的响应速度更快、更灵活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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