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ADVANCEMENTS IN H CLASS GAS TURBINES AND COMBINED CYCLE POWER PLANTS

机译:H级燃气轮机和组合循环发电厂的进步

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The power generation industry is facing unprecedented challenges. High fuel costs combined with an increased penetration of renewable power has resulted in greater demand for high efficiency and operational flexibility. Imperative for a reduced carbon footprint places an even higher premium on efficiency. Power producers are seeking highly efficient, reliable, and operationally flexible solutions that provide long-term profitability in a volatile environment. New generation must also be cost-effective to ensure affordability for both domestic and industrial consumers. Gas turbine combined cycle power plants provide reliable, dispatch-able generation with low cost of electricity, reduced environmental impact, and improved flexibility. GE's air-cooled, H-class gas turbines (7/9HA) are engineered to achieve greater than 63% net, combined cycle efficiency while delivering operational flexibility through deep, emission-compliant turndown and high ramp rates. The largest of these gas turbines, the 9HA.02, exceeds 64% combined cycle efficiency (net, ISO) in a 1×1, single-shaft configuration. In parallel, the power plant has been configured for rapid construction and commissioning enabling timely revenue generation for power plant developers and owners. The HA platform is enabled by 1) use of a simple air-cooling system for the turbine section that does not require external heat exchange and the associated cost and complexity, and 2) use of well-known materials and coatings with substantial operating experience at high firing temperatures. Key technology improvements for the HA's include advanced cooling and sealing, utilization of unsteady aerodynamic methodologies, axially staged combustion and next generation thermal barrier coating (TBC). Validation of the architecture and technology insertion is performed in a dedicated test facility over the full operating range. As of February 2018, a total of 18 HA power plants have achieved COD (Commercial Operation). This paper will address three topics relating to the HA platform: 1) gas turbine product technology, 2) gas turbine validation and 3) integrated power plant commissioning and operating experience.
机译:发电行业面临前所未有的挑战。高燃料成本与可再生能源的渗透率增加,导致对高效率和操作灵活性的更大需求。对碳足迹减少的迫使会使效率更高。电力生产商正在寻求高效,可靠,可操作灵活的解决方案,在挥发性环境中提供长期盈利能力。新一代也必须具有成本效益,可确保国内和工业消费者的负担能力。燃气轮机联合循环发电厂提供可靠,调度能量,电力成本低,环境影响降低,灵活性提高。 GE的空气冷却,H级燃气轮机(7/9)设计成达到63%的净净,综合循环效率,同时通过深度,排放柔和的调节和高坡度提供运行灵活性。这些燃气轮机中最大的9HA.02超过了1×1,单轴配置的64%组合循环效率(净,iso)。并行地,该电厂已被配置为快速建设和调试,可及时为发电厂开发商和业主提供及时的收入。 HA平台使得能够使用简单的空气冷却系统,用于涡轮部分,该系统不需要外部热交换和相关成本和复杂性,以及2)使用具有大量操作体验的众所周知的材料和涂层。高烧制温度。 HA的关键技术改进包括先进的冷却和密封,利用不稳定的空气动力学方法,轴向上燃烧和下一代热阻挡涂层(TBC)。验证架构和技术插入在完全操作范围内的专用测试设备中执行。截至2018年2月,共有18个HA发电厂取得了COD(商业运营)。本文将介绍与HA平台有关的三个主题:1)燃气轮机产品技术,2)燃气轮机验证和3)集成电厂调试和运营经验。

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