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OPERATION OF REHEAT COMBUSTORS WITH SECONDARY AIR FLOW (SAF) CONTROL VALVES

机译:带有二次风(SAF)控制阀的再热燃烧器的操作

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GT26 reheat gas turbines have been continuously developed and upgraded to improve the engine performance and operational flexibility. In a standard SAF flow orifices configuration typically sized for the design point, the supply pressure ratios of secondary air flow systems for base-load operation vary over ambient temperatures. The adjustable secondary air flow control valves make the active control of the cooling air supply pressure ratios possible and could provide a customized cooling air consumption and adjust engine operation conditions. This control valve concept has been comprehensively tested and validated in Alstom test power plant and operated in customer engines. This paper focuses mainly on combustor cooling improvement with this secondary air flow control valves. G26 reheat combustors with the adjustable secondary air flow control valves have improved significantly sequential combustor cooling and combustor performance. The supply pressure ratios of secondary air flow system over wide part load range which are originally lower and critical with a standard orifice configuration have been raised and results in more cooling air flows to the combustor cooling system than original standard orifice configuration. This increased cooling air flow improves SEV combustor liner and SEV burner cooling over large range of part load operation. The metal temperatures of the SEV liners and SEV burners are reduced significantly over part load, while the highest metal temperatures are recorded over part load operation with previously installed standard orifices configuration. In addition, the supply pressure ratios in secondary air flow systems with fixed throttling element are lower during oil operation than the corresponding ratios for fuel gas operation. The cooling supply pressure ratios in cooling systems with SAF control valves are optimized to supply the required combustor cooling air flow for oil operation. The optimized cooling can also be achieved through adjustment of SAF control valves for high-fogging (HF) engines between dry operation and wet operation. In addition, pulsation reduction at oil operation can be achieved by fully opening of MBH30 control valve.
机译:GT26再热燃气轮机一直在不断开发和升级,以提高发动机性能和操作灵活性。在通常根据设计点确定尺寸的标准SAF流量孔口配置中,用于基本负荷运行的二次空气流量系统的供应压力比会随环境温度而变化。可调节的二次空气流量控制阀使主动控制冷却空气供应压力比成为可能,并且可以提供定制的冷却空气消耗并调整发动机运行条件。该控制阀概念已在阿尔斯通试验发电厂进行了全面测试和验证,并在客户发动机中运行。本文主要侧重于利用该二次空气流量控制阀来改善燃烧室的冷却性能。带有可调节二级空气流量控制阀的G26再热燃烧器显着改善了顺序燃烧器的冷却和燃烧器性能。原来在标准节流孔构造下较低且至关重要的,在较宽的部分负荷范围内的二次空气流动系统的供气压力比已经提高,与原始的标准节流孔构造相比,导致进入燃烧室冷却系统的冷却空气流量更大。在较大的部分负荷运行范围内,这种增加的冷却气流改善了SEV燃烧室衬套和SEV燃烧器的冷却性能。在部分负荷下,SEV衬套和SEV燃烧器的金属温度显着降低,而在使用先前安装的标准孔配置的部分负荷运行中,记录了最高的金属温度。另外,在节流元件固定的二次空气流动系统中,供油压力比在燃油运行时要比燃气运行的相应压力比要低。带SAF控制阀的冷却系统中的冷却供应压力比已优化,可为机油运行提供所需的燃烧器冷却空气流量。通过在干运转和湿运转之间调节高雾度(HF)发动机的SAF控制阀,也可以实现最佳的冷却效果。此外,通过完全打开MBH30控制阀可以减少机油运行时的脉动。

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