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NUMERICAL AND EXPERIMENTAL INVESTIGATIONS OF COMBUSTION INSTABILITY PHENOMENA IN GAS TURBINE BURNERS FOR HEAVY DUTY AND AERO-ENGINE APPLICATIONS

机译:重型和航空发动机燃气轮机燃烧不稳定性现象的数值和实验研究

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In the recent years, as the technical developments in the field of GT related technology are more and more driven by regulations on environmental pollution control, a whole series of different industrial evolution and innovation lines are investigated so to make combustion processes ever "cleaner". Among those, there is for sure the adoption of lean and ultra lean combustion processes to be pursued by means of air-fuel premixing combustion technologies. Within this scenario, at DIMSET/SCL (Savona Combustion Laboratory, Dept. of Thermal Machines, Energy Systems and Transportation, Univ. of Genoa) since several years research activities are carried out, mainly within the frame of EC-funded Research Programmes (ICLEAC, MUSCLES, TLC, H_2-IGCC) and cooperation with industrial companies of the energy sector (Ansaldo Energia S.p.A.) and aero-propulsion (Avio Group) sectors. Research activities can take advantage of a close integration between experimental facilities, such as several reactive and non-reactive dedicated burner test-rigs, instrumented with LDV, PDA and PIV laser-based equipment, as well as of in-house continuously improved reactive Navier-Stokes solvers for combustor analysis (NastComb solver) and design (TPM method). The paper deals with the stability characterisation of the different combustion-processes taking place within several GT power plants, namely, the heavy duty AE64-3A heavy duty gas turbine (Ansaldo Energia), already present on the market, the so-called Liquid and Gas Rapid Pre-Mix burners, LRPM and GRPM, designed at DIMSET/SCL and still prototypical, and the Avio-designed LPP (Lean Premixed Prevaporised) burner, for aero-engine applications. The research has been addressed at in-depth characterising the stability behaviour of the burner's operation. In particular, those aspects have been investigated deemed of greatest importance in affecting a stable performance profile, such as swirlers' design, burner's internal aerodynamics, premixing duct configuration, fuel typology and injection modalities, etc. The paper gives a synoptic view both of the research approaches (experimental, instrumental, numerical analysis and design) jointly pursued by DIMSET/SCL team in investigating the combustion instability, as well as of the obtained results, which help in pointing out those burner design and operational parameters which appear as most critical in affecting instability insurgence and self-sustainment.
机译:近年来,随着GT相关技术领域的技术发展越来越受到环境污染控制法规的推动,人们研究了一系列不同的产业发展和创新路线,从而使燃烧过程变得更加“清洁”。其中,可以肯定的是,将通过空燃预混燃烧技术采用稀薄燃烧和超稀薄燃烧工艺。在这种情况下,由于开展了数年的研究活动,主要是在EC资助的研究计划(ICLEAC)的框架内,因此在DIMSET / SCL(热那亚大学热力机械,能源系统和运输系萨沃纳燃烧实验室)进行了研究,肌肉,TLC,H_2-IGCC),并与能源行业(Ansaldo Energia SpA)和航空推进(Avio Group)行业的工业公司合作。研究活动可以利用实验设施之间的紧密结合,例如使用基于LDV,PDA和PIV激光设备的几个反应堆和非反应堆专用燃烧器试验台,以及内部不断改进的反应堆Navier。 -Stokes求解器,用于燃烧器分析(NastComb求解器)和设计(TPM方法)。本文讨论了几个GT电厂内发生的不同燃烧过程的稳定性特征,即重型AE64-3A重型燃气轮机(Ansaldo Energia),已在市场上出售,即所谓的Liquid和适用于DIMSET / SCL且仍为原型的Gas Rapid Pre-Mix燃烧器LRPM和GRPM,以及Avio设计的LPP(稀薄预混预蒸发)燃烧器,用于航空发动机应用。已经深入描述了燃烧器运行的稳定性行为,对研究进行了研究。尤其是,对那些被认为在影响稳定性能曲线方面最重要的方面进行了研究,例如旋流器的设计,燃烧器的内部空气动力学,预混管道的配置,燃料类型和喷射方式等。 DIMSET / SCL团队共同采用的研究方法(实验,仪器,数值分析和设计),以研究燃烧不稳定性以及获得的结果,这有助于指出那些在燃烧过程中最关键的燃烧器设计和运行参数。影响不稳定的叛乱和自我维持。

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