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Combined-cycle gas turbine power plant integration with cascaded latent heat thermal storage for fast dynamic responses

机译:联合循环燃气轮机发电厂与级联潜热蓄热器的集成,可实现快速动态响应

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摘要

The combined-cycle gas turbine (CCGT) power plants are often required to provide the essential fast grid balance service between the load demand and power supply with the increase of the intermittent power generation from renewable energy sources. It is extremely challenging to ensure CCGT power plants operating flexibly and also maintaining its efficiency at the same time. This paper presents the feasibility study of a CCGT power plant combined with the cascaded latent heat storage (CLHS) for plant flexible operation. A 420 MW CCGT power plant and a CLHS dynamic models are developed in Aspen Plus based on a novel modelling approach. The plant start-up processes are studied, and large amount of thermal energy can be accumulated by CLHS during the start-up. For load-following operation, extensive dynamic simulation study is conducted and the simulation results show that the extracted exhaust gas can be used for thermal energy storage charging, and the stored heat can be discharged to produce high temperature and high pressure steam fed to the steam turbine. Besides, the stored heat can also be used to maintain the heat recovery steam generator (HRSG) under warm condition to reduce plant restart -up time. The simulation results demonstrate that the integration of CLHS with CCGT power plant is feasible during the start-up, load-following and standstill operations.
机译:随着可再生能源的间歇性发电的增加,通常需要联合循环燃气轮机(CCGT)发电厂在负载需求和电源之间提供基本的快速电网平衡服务。确保CCGT电厂灵活运行并同时保持其效率非常具有挑战性。本文介绍了CCGT电厂与级联潜热库(CLHS)结合用于电厂灵活运营的可行性研究。基于一种新颖的建模方法,在Aspen Plus中开发了420 MW CCGT电厂和CLHS动态模型。研究了工厂的启动过程,CLHS在启动过程中可以积累大量的热能。对于负载跟踪操作,进行了广泛的动态仿真研究,仿真结果表明所提取的废气可用于热能存储装料,并且所存储的热量可被排放以产生高温高压蒸汽供入蒸汽涡轮。此外,存储的热量还可以用于将热回收蒸汽发生器(HRSG)保持在温暖的状态,以减少工厂的重启时间。仿真结果表明,CLHS与CCGT电厂的集成在启动,负荷跟踪和停机操作期间都是可行的。

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