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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Laboratory Investigations of Low-Swirl Injectors Operating With Syngases
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Laboratory Investigations of Low-Swirl Injectors Operating With Syngases

机译:用合成气操作的低旋流注射器的实验室研究

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摘要

The low-swirl injector (LSI) is a lean premixed combustion technology that has the potential for adaptation to fuel-flexible gas turbines operating on a variety of fuels. The objective of this study is to gain a fundamental understanding of the effect of syngas on the LSI flame behavior, the emissions, and the flowfield characteristics for adaptation to the combustion turbines in integrated gasification combined cycle clean coal power plants. The experiments were conducted in two facilities. Open atmospheric laboratory flames generated by a full size (6.35 cm) LSI were used to investigate the lean blow-off limits, emissions, and the flowfield characteristics. Verification of syngas operation at elevated temperatures and pressures were performed with a reduced scale (2.54 cm) LSI in a small pressurized combustion channel. The results show that the basic LSI design is amenable to burning syngases with up to 60% H_2. Syngases with high H_2 concentration have lower lean blow-off limits. From particle image velocimetry measurements, the flowfield similarity behavior and the turbulent flame speeds of syngases flames are consistent with those observed in hydrocarbon and pure or diluted hydrogen flames. The NO_x emissions from syngas flames show log-linear dependency on the adiabatic flame temperature and are comparable to those reported for the gaseous fuels reported previously. Successful firing of the reduced-scale LSI at 450 K
机译:低涡旋喷油器(LSI)是一种稀薄的预混燃烧技术,具有适应以多种燃料运行的燃料柔性燃气轮机的潜力。这项研究的目的是对合成气对LSI火焰行为,排放和流场特性的影响有基本的了解,以适应集成气化联合循环清洁煤电厂中的燃气轮机。实验在两个设施中进行。使用全尺寸(6.35 cm)LSI产生的开放式大气实验室火焰来研究稀薄排放极限,排放和流场特性。在小型加压燃烧通道中,使用缩小规模的(2.54 cm)LSI进行了高温和高压下合成气运行的验证。结果表明,基本的LSI设计适合燃烧高达60%H_2的合成气。 H_2浓度高的合成气具有较低的稀燃排放极限。根据颗粒图像测速仪的测量,合成气火焰的流场相似性和湍流火焰速度与在碳氢化合物和纯氢或稀氢火焰中观察到的一致。合成气火焰中的NO_x排放量与绝热火焰温度呈对数线性关系,可与之前报道的气态燃料的排放相比。缩小规模的LSI在450 K

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