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International Experience in Developing Low-Emission Combustors for Land-Based, Large Gas-Turbine Units: Mitsubishi Heavy Industries’ Equipment

机译:开发陆基大型燃气轮机低排放燃烧室的国际经验:三菱重工的设备

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This is the second paper in a series of publications summarizing the international experience in the development of low-emission combustors (LEC) for land-based, large (above 250 MW) gas-turbine units (GTU). The purpose of this series is to generalize and analyze the approaches used by various manufacturers in designing flowpaths for fuel and air in LECs, managing fuel combustion, and controlling the fuel flow. The efficiency of advanced GTUs can be as high as 43% (with an output of 350–500 MW) while the efficiency of 600–800 MW combined-cycle units with these GTUs can attain 63.5%. These high efficiencies require a compression ratio of 20–24 and a temperature as high as 1600°С at the combustor outlet. Accordingly, the temperature in the combustion zone also rises. All the requirements for the control of harmful emissions from these GTUs are met. All the manufacturers and designers of LECs for modern GTUs encounter similar problems, such as emissions control, combustion instability, and reliable cooling of hot path parts. Methods of their elimination are different and interesting from the standpoint of science and practice. One more essential requirement is that the efficiency and environmental performance indices must be maintained irrespective of the fuel composition or heating value and also in operation at part loads below 40% of rated. This paper deals with Mitsubishi Series M701 GTUs, F, G, or J class, which have gained a good reputation in the power equipment market. A design of a burner for LECs and a control method providing stable low-emission fuel combustion are presented. The advantages and disadvantages of the use of air bypass valves installed in each liner to maintain a nearly constant air to fuel ratio within a wide range of GTU loads are described. Methods for controlling low- and high-frequency combustion instabilities are outlined. Upgrading of the cooling system for the wall of a liner and a transition piece is of great interest. Change over from effusion (or film) cooling to convective steam cooling and convective air cooling has considerably increased the GTU efficiency.
机译:这是一系列出版物中的第二篇论文,总结了开发陆基大型(250 MW以上)燃气轮机(GTU)低排放燃烧器(LEC)的国际经验。本系列文章的目的是概括和分析各种制造商在设计LEC中燃料和空气的流路,管理燃料燃烧和控制燃料流量时使用的方法。先进的GTU的效率可高达43%(输出350-500 MW),而使用这些GTU的600-800 MW联合循环机组的效率可达到63.5%。这些高效率要求燃烧器的压缩比为20-24,燃烧室出口的温度高达1600°С。因此,燃烧区中的温度也升高。满足了控制这些GTU有害排放的所有要求。所有用于现代GTU的LEC的制造商和设计人员都遇到类似的问题,例如排放控制,燃烧不稳定性以及热通道零件的可靠冷却。从科学和实践的角度来看,消除它们的方法是不同且有趣的。一个更重要的要求是,无论燃料成分或发热量如何,以及在低于额定负荷40%的部分负荷下运行,都必须保持效率和环境性能指标。本文涉及三菱系列M701 GTU,F,G或J类,它们在电力设备市场中享有良好的声誉。提出了用于LEC的燃烧器的设计和提供稳定的低排放燃料燃烧的控制方法。描述了使用安装在每个衬套中的空气旁通阀在很大的GTU负载范围内保持几乎恒定的空燃比的优缺点。概述了控制低频和高频燃烧不稳定性的方法。衬套和过渡件的壁的冷却系统的升级引起了极大的兴趣。从排放(或薄膜)冷却到对流蒸汽冷却和对流空气冷却的转换大大提高了GTU效率。

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