首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >DESIGN IMPROVEMENT SURVEY FOR NO_x EMISSIONS REDUCTION OF A HEAVY-DUTY GAS TURBINE PARTIALLY PREMIXED FUEL NOZZLE OPERATING WITH NATURAL GAS: EXPERIMENTAL CAMPAIGN
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DESIGN IMPROVEMENT SURVEY FOR NO_x EMISSIONS REDUCTION OF A HEAVY-DUTY GAS TURBINE PARTIALLY PREMIXED FUEL NOZZLE OPERATING WITH NATURAL GAS: EXPERIMENTAL CAMPAIGN

机译:减少部分重混合天然气使用天然气的重型燃气轮机的NO_x排放量的设计改进调查:实验研究

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As government regulations become increasingly strict with regards to combustion pollutant emissions, new gas turbine combustor designs must produce lower NOx while also maintaining acceptable combustor operability. The design and implementation of an efficient fuel/air premixer is paramount to achieving low emissions. Options for improving the design of a natural gas fired heavy-duty gas turbine partially premixed fuel nozzle have been considered in the current study. In particular, the study focused on fuel injection and pilot/main interaction at high pressure and high inlet temperature. NOx emissions results have been reported and analyzed for a baseline nozzle first. Available experience is shared in this paper in the form of a NOx correlative model, giving evidence of the consistency of current results with past campaigns. Subsequently, new fuel nozzle premixer designs have been investigated and compared, mainly in terms of NOx emissions performance. The operating range of investigation has been preliminarily checked by means of a flame stability assessment. Adequate margin to lean blow out and thermo-acoustic instabilities onset has been found while also maintaining acceptable CO emissions. NOx emission data were collected over a variety of fuel/air ratios and pilot/main splits for all the fuel nozzle configurations. Results clearly indicated the most effective design option in reducing NOx. In addition, the impact of each design modification has been quantified and the baseline correlative NOx emissions model calibrated to describe the new fuel nozzles behavior. Effect of inlet air pressure has been evaluated and included in the models, allowing the extensive use of less costly reduced pressure test campaigns hereafter. Although the observed effect of combustor pressure drop on NOx is not dominant for this particular fuel nozzle, sensitivity has been performed to consolidate gathered experience and to make the model able to evaluate even small design changes affecting pressure drop.
机译:随着政府法规对燃烧污染物排放的要求越来越严格,新的燃气轮机燃烧室设计必须产生更低的NOx,同时还要保持可接受的燃烧室可操作性。高效的燃油/空气预混合器的设计和实施对于实现低排放至关重要。在当前的研究中,已经考虑了用于改进天然气燃烧式重型燃气轮机部分预混合燃料喷嘴的设计的选项。特别地,该研究集中于高压和高入口温度下的燃料喷射和引燃/主相互作用。首先报告并分析了基准喷嘴的NOx排放结果。本文以NOx相关模型的形式分享了可用的经验,提供了当前结果与过去活动的一致性的证据。随后,主要在NOx排放性能方面,对新的燃油喷嘴预混合器设计进行了研究和比较。已通过火焰稳定性评估初步检查了研究的工作范围。已经发现有足够的余量来进行稀薄喷吹和热声不稳定,同时还保持了可接受的CO排放量。在所有燃油喷嘴配置下,通过各种燃油/空气比和先导/主分流器收集了NOx排放数据。结果清楚地表明了减少NOx的最有效的设计方案。另外,已经量化了每种设计修改的影响,并已对基准的相关NOx排放模型进行了校准,以描述新的燃料喷嘴行为。评估了进气压力的影响并将其包括在模型中,此后可以广泛使用成本较低的减压测试方案。尽管对于这种特殊的燃料喷嘴,燃烧室压降对NOx的影响并不是主要的,但是已经进行了敏感性分析,以巩固所收集的经验,并使模型能够评估甚至很小的影响压降的设计变化。

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