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Forced response on swirl stabilized flames in hydrogen enriched gas turbines.

机译:富氢燃气轮机中对旋流稳定火焰的强制响应。

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摘要

The forced response of swirl-stabilized lean-premixed turbulent flames to inlet velocity and/or equivalence ratio oscillations in hydrogen enriched laboratory-scale gas turbine combustors was experimentally investigated. To characterize the response of premixed and partially premixed flames, several measurement techniques were used. Inlet velocity and equivalence ratio fluctuations were measured by the two-microphone method and the infrared absorption technique, respectively. Global heat release oscillations were determined by measuring naturally occurring flame chemiluminescence emissions using photomultiplier tubes. Steady-state flame structure and phase-resolved flame dynamics were characterized by CH* chemiluminescence imaging using an intensified CCD camera.;Results show that the response of a premixed flame to inlet velocity oscillations is strongly dependent on the effective flame length. This extends previous experimental and analytical results from laminar to turbulent premixed flames. The nonlinear response of the flame is manifested by shear layer rollup and unsteady flame liftoff, depending on the amplitude of perturbations. The response of hydrogen-enriched flames is linear, irrespective of vortex shedding. The forced response of a flame to equivalence ratio oscillations alone was achieved by using a fuel modulation method. When the flame is perturbed by mixture ratio modulations, it shows both linear and nonlinear responses. The nonlinearity is associated with the intrinsically nonlinear dependence of burning velocity and equivalence ratio upon the heat release. Finally, the response of a partially premixed flame to perturbations of both inlet velocity and equivalence ratio was studied. Unsteady local extinction events were identified as a mechanism of nonlinearity, which results from flame stretching effects. In particular, unsteady local extinction is more obvious in the nonlinear dynamics of hydrogen enriched partially premixed flames. The phase difference between inlet velocity and equivalence ratio nonuniformities is a key parameter controlling the linear and nonlinear response of a partially premixed flame. Results also show that in the linear regime, the response of a partially premixed flame can be reconstructed using the responses of a flame to velocity and equivalence ratio, using a vector summation rule.
机译:实验研究了富氢实验室规模燃气轮机燃烧室中旋流稳定的稀薄预混湍流火焰对入口速度和/或当量比振荡的强迫响应。为了表征预混和部分预混火焰的响应,使用了几种测量技术。入口速度和当量比波动分别通过两麦克风法和红外吸收法测量。通过使用光电倍增管测量自然发生的火焰化学发光来确定整体放热振荡。通过使用增强型CCD照相机进行CH *化学发光成像,可以表征稳态火焰结构和相分辨的火焰动力学。结果表明,预混火焰对入口速度振荡的响应在很大程度上取决于有效火焰长度。这将先前的实验和分析结果从层流火焰扩展到湍流。火焰的非线性响应表现为剪切层的卷起和不稳定的火焰抬升,这取决于扰动的幅度。富氢火焰的响应是线性的,与涡旋脱落无关。仅通过使用燃料调制方法就可以实现火焰对当量比振荡的强制响应。当火焰被混合比调制扰动时,它会显示线性和非线性响应。非线性与燃烧速度和当量比对热量释放的内在非线性关系有关。最后,研究了部分预混火焰对入口速度和当量比扰动的响应。不稳定的局部灭绝事件被认为是由火焰拉伸效应引起的非线性机制。特别是,在富氢的部分预混火焰的非线性动力学中,不稳定的局部熄灭更为明显。入口速度和当量比不均匀性之间的相位差是控制部分预混火焰的线性和非线性响应的关键参数。结果还表明,在线性状态下,可以使用矢量求和规则使用火焰对速度和当量比的响应来重建部分预混火焰的响应。

著录项

  • 作者

    Kim, Kyu Tae.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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