高压液体燃料燃烧室中燃烧室溢液膜的高速OH PLIF测量

A. Chandh, Shivam Patel, O. Bibik, S. Adhikari, David Wu, R. Rezvani, D. Davis, T. Lieuwen, B. Emerson
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引用次数: 1

摘要

本文采用10khz平面激光诱导荧光(PLIF)测量方法,研究了液体燃料燃烧室中射流冷却与火焰和热燃烧产物的相互作用。燃烧室装置是一个单一扇形表示的富燃/快淬/稀燃(RQL)配置。它包括一个漩涡喷嘴,稀释和积液射流。该钻机在真实的飞机条件下运行,包括燃烧室入口温度升高和压力升高。PLIF激光片在不同的衬垫位置垂直或平行排列。研究了重要参数等效比和射流冷却吹气比的参数变化对火焰-射流相互作用的影响。利用几种数据降阶技术对PLIF图像进行了分析,以去除图像中的噪声,并识别出射流-火焰相互作用的模式。结果表明,射流是非稳定的,射流与涡流喷嘴的湍流火焰和稀释射流相互作用强烈。这项工作是最近在非反应条件下用丙酮PLIF进行的积液膜混合研究的延伸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Speed OH PLIF Measurements of Combustor Effusion Films in a High Pressure, Liquid Fueled Combustor
This paper presents measurements of 10 kHz OH planar laser induced fluorescence (PLIF) with an objective to study the interaction of effusion cooling with the flame and hot combustion products in the liquid fueled combustor. The combustor rig is a single sector representation a rich-burn/quick-quench/lean-burn (RQL) configuration. It consists of a swirl nozzle, dilution, and effusion jets. The rig is operated under realistic aircraft conditions, including elevated combustor inlet temperature, and elevated pressure. The PLIF laser sheet was arranged perpendicular and parallel to the liner at distinct liner locations. Parametric variations of important parameters, namely equivalence ratio, and effusion cooling air blowing ratio are conducted to investigate their effect on flame-effusion jet interactions. The PLIF images were analyzed using several data reduction techniques to de-noise the images and identify patterns in the effusion jet-flame interactions. Results show that the effusion jets are highly unsteady, interacting strongly with the turbulent flame from the swirl nozzle and the dilution jets. This work is an extension of recent effusion film mixing studies that were performed with acetone PLIF under non-reacting conditions.
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