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The Three-Dimensional Structure of Swirl-Stabilized Flames in a Lean Premixed Multinozzle Can Combustor

机译:稀薄预混多喷嘴罐式燃烧器中旋流稳定火焰的三维结构

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摘要

Flame structure can have a significant effect on a combustor's static stability (resistance to blowoff) and dynamic stability (combustion instability) and therefore is an important aspect of the combustion process that must be taken into account in the design of gas turbine combustors. While the relationship between flame structure and flame stability has been studied extensively in single-nozzle combustors, relatively few studies have been conducted in multinozzle combustor configurations typical of actual gas turbine combustion systems. In this paper, a chemiluminescence-based tomographic reconstruction technique is used to obtain three-dimensional images of the flame structure in a laboratory-scale five-nozzle can combustor. Analysis of the 3D images reveals features of the complex, three-dimensional structure of this multinozzle flame. Effects of interacting swirling flows, flame-flame interactions, and flame-wall interactions on the flame structure are also discussed.
机译:火焰结构可能会对燃烧器的静态稳定性(耐吹气性)和动态稳定性(燃烧不稳定性)产生重大影响,因此,它是燃烧过程的重要方面,必须在燃气轮机燃烧器的设计中加以考虑。尽管已经在单喷嘴燃烧器中广泛研究了火焰结构与火焰稳定性之间的关系,但是在实际燃气轮机燃烧系统典型的多喷嘴燃烧器配置中进行的研究相对较少。在本文中,基于化学发光的层析成像重建技术用于获得实验室规模的五喷嘴罐燃烧室火焰结构的三维图像。对3D图像的分析揭示了这种多喷嘴火焰的复杂三维结构的特征。还讨论了相互作用的旋流,火焰-火焰相互作用和火焰-壁相互作用对火焰结构的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2016年第3期|031502.1-031502.10|共10页
  • 作者单位

    Turbulent Combustion Lab, The Pennsylvania State University, University Park, PA 16802;

    Turbulent Combustion Lab, The Pennsylvania State University, University Park, PA 16802;

    Turbulent Combustion Lab, The Pennsylvania State University, University Park, PA 16802;

    Turbulent Combustion Lab, The Pennsylvania State University, University Park, PA 16802;

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