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Regenerative gas turbines and steam injection for repowering combined cycle power plants: Design and part-load performance

机译:再生燃气轮机和蒸汽喷射,用于重新交锋的联合循环发电厂:设计和部分负载性能

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The fast increase in electricity demand and the need to meet the carbon dioxide emissions reduction targets are fostering the role of natural-gas based technologies for both distributed and centralized power generation. Due to their reliability and high-efficiency, combined cycle gas turbines (CCGTs) are regarded as a short to mid-term "bridge" technology towards a secure and cleaner electricity system, characterized by the full deployment of renewable technologies. In this context, it is important to explore potential options to upgrade the capacity of CCGTs, provided that the design of new facilities currently faces challenges related to insufficient financial resources and the lack of suitable sites for their installation.This study investigates a novel concept for repowering CCGTs. The solution proposed relies on the integration of a cogeneration unit based on a regenerative gas turbine (RGT), providing additional power capacity and superheated steam to be injected into the existing CCGT. Compared to traditional repowering techniques, the option proposed in this study is able to enhance the power production without drastically reducing the efficiency of existing CCGT. The simulation study investigates the effect of RGT operating conditions on techno-economic performance of the integrated power plant (IPP), referring to the marginal and the overall power productions. With the aim to assess the plant flexibility, the part-load operation of IPP is also analyzed, assuming an inlet guide vane (IGV) and turbine inlet temperature (TIT) control schedule.Simulation results found out that the repowering approach proposed allows for a maximum power increase of more than + 70%, at the expense of a penalty on net efficiency of around 1% pts compared to the existing CCGT. The repowered CCGT can also be operated at part-load, while providing remarkable energy and economic performances.
机译:电力需求的快速增加和满足二氧化碳排放减少目标的需求正在促进基于天然气基础的技术的分布式和集中发电的作用。由于它们的可靠性和高效,联合循环燃气轮机(CCGT)被认为是一个简短的中期“桥梁”技术朝向安全和更清洁的电力系统,其特点是可再生技术的全部部署。在这种情况下,探讨潜在的选择升级CCGT的能力是很重要的,只要新设施的设计目前面临与金融资源不足和缺乏适当的地点的挑战。这项研究调查了一个新颖的概念重新交换CCGT。提出的解决方案依赖于基于再生燃气涡轮机(RGT)的热电单元的整合,提供额外的功率容量和过热蒸汽以注入现有的CCGT。与传统重新交锋技术相比,本研究中提出的选择能够在不大幅度降低现有CCGT的效率的情况下提高电力生产。仿真研究调查了RGT操作条件对综合电厂(IPP)技术经济性能的影响,指的是边缘和整体电力制作。旨在评估植物的灵活性,还分析了IPP的部分负荷操作,假设入口导向叶片(IGV)和涡轮机入口温度(滴度)控制计划。仿效结果发现,所提出的重新驱动方法允许a最大功率增加超过+ 70%,以牺牲净效率的罚款与现有的CCGT相比净效率约为1%。重新交通的CCGT也可以在部分负载下运营,同时提供了显着的能量和经济性能。

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