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首页> 外文期刊>Thermal engineering >Experience Gained from Construction of Low-Emission Combustion Chambers for On-Land Large-Capacity Gas-Turbine Units: GT24/26
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Experience Gained from Construction of Low-Emission Combustion Chambers for On-Land Large-Capacity Gas-Turbine Units: GT24/26

机译:陆上大容量燃气轮机机组低排放燃烧室建造的经验:GT24 / 26

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摘要

This article is the third in a planned series of articles devoted to the experience gained around the world in constructing low-emission combustion chambers for on-land large-capacity (above 250 MW) gas-turbine units (GTUs). The aim of this study is to generalize and analyze the ways in which different designers apply the fuel flow and combustion arrangement principles and the fuel feed control methods. The considered here GT24 and GT26 (GT24/26) gas-turbine units generating electric power at the 60 and 50 Hz frequencies, respectively, are fitted with burners of identical designs. Designed by ABB, these GTUs were previously manufactured by Alstom, and now they are produced by Ansaldo Energia. The efficiency of these GTUs reaches 41% at the 354 MW power output during operation in the simple cycle and 60.5% at the 505MW power output during operation in the combined cycle. Both GTUs comply with all requirements for harmful emissions. The compression ratio is equal to 35. In this article, a system is considered for two-stage fuel combustion in two sequentially arranged low-emission combustion chambers, one of which is placed upstream of the high-pressure turbine (CC1) and the other upstream of the low-pressure turbine (CC2). The article places the main focus on the CC2, which operates with a decreased content of oxygen in the oxidizer supplied to the burner inlets. The original designs of vortex generators and nozzles placed in the flow of hot combustion products going out from the high-pressure turbine are described in detail. The article also presents an original CC2 front plate cooling system, due to which a significantly smaller amount of air fed for cooling has been reached. The article also presents the pressure damping devices incorporated in the chamber, the use of which made it possible to obtain a significantly wider range of CC loads at which its low-emission operation is ensured. The fuel feed adjustment principles and the combustion control methods implemented in the low-emission combustion chambers of this GTU are of interest from the scientific and practical points of view.
机译:本文是计划中的系列文章中的第三篇,该系列文章专门介绍了在为陆上大容量(250 MW以上)燃气轮机(GTU)建造低排放燃烧室中获得的经验。这项研究的目的是概括和分析不同设计者应用燃料流和燃烧布置原理以及燃料进料控制方法的方式。此处考虑使用的GT24和GT26(GT24 / 26)燃气轮机分别以60和50 Hz的频率发电,并装有相同设计的燃烧器。这些GTU由ABB设计,以前由阿尔斯通(Alstom)制造,现在由Ansaldo Energia生产。这些GTU的效率在简单循环中以354 MW的功率输出达到41%,在联合循环中以505MW的功率输出达到60.5%。两个GTU都符合有害排放的所有要求。压缩比等于35。在本文中,考虑在两个顺序排列的低排放燃烧室中进行两级燃料燃烧的系统,其中一个位于高压涡轮(CC1)的上游,另一个位于低压涡轮(CC2)的上游。本文主要关注CC2,CC2的运行方式是减少供应给燃烧器入口的氧化剂中的氧气含量。详细描述了涡流发生器和喷嘴的原始设计,这些涡流发生器和喷嘴放置在从高压涡轮流出的热燃烧产物流中。该文章还提出了一种原始的CC2前面板冷却系统,由于该系统,冷却所用的空气量明显减少了。该文章还介绍了安装在腔室中的压力阻尼装置,通过使用该装置,可以获得更大范围的CC负载,从而确保其低排放运行。从科学和实践的角度来看,在该GTU的低排放燃烧室中实施的燃料供给调节原理和燃烧控制方法是令人关注的。

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