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Non-invasive seedingless measurements of the flame transfer function using high-speed camera-based laser vibrometry

机译:使用基于照相机的高速激光振动法对火焰传递函数进行无创无核测量

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The characterization of modern jet engines or stationary gas turbines running with lean combustion by means of swirl-stabilized flames necessitates seedingless optical field measurements of the flame transfer function, i.e. the ratio of the fluctuating heat release rate inside the flame volume, the instationary flow velocity at the combustor outlet and the time average of both quantities. For this reason, a high-speed camera-based laser interferometric vibrometer is proposed for spatio-temporally resolved measurements of the flame transfer function inside a swirl-stabilized technically premixed flame. Each pixel provides line-of-sight measurements of the heat release rate due to the linear coupling to fluctuations of the refractive index along the laser beam, which are based on density fluctuations inside the flame volume. Additionally, field measurements of the instationary flow velocity are possible due to correlation of simultaneously measured pixel signals and the known distance between the measurement positions. Thus, the new system enables the spatially resolved detection of the flame transfer function and instationary flow behavior with a single measurement for the first time. The presented setup offers single pixel resolution with measurement rates up to 40 kHz at an maximum image resolution of 256 px x 128 px. Based on a comparison with reference measurements using a standard pointwise laser interferometric vibrometer, the new system is validated and a discussion of the measurement uncertainty is presented. Finally, the measurement of refractive index fluctuations inside a flame volume is demonstrated.
机译:现代喷气发动机或固定燃气轮机的特征在于通过旋流稳定火焰在稀薄燃烧下运行,因此必须对火焰传递函数进行无种子的光学场测量,即火焰体积内波动的放热率与固定流速的比值在燃烧室出口处和两个量的时间平均值。因此,提出了一种基于照相机的高速激光干涉振动仪,用于时空分辨的旋涡稳定的技术预混火焰内部的火焰传递函数的测量。由于线性耦合到沿激光束的折射率波动,这是基于火焰体积内部的密度波动,因此,每个像素都提供了放热率的视线测量结果。另外,由于同时测量的像素信号与测量位置之间的已知距离之间的相关性,可以对固定流速进行现场测量。因此,新系统首次实现了通过一次测量即可对火焰传递函数和平稳流动行为进行空间分辨检测。提出的设置提供了单像素分辨率,测量速率高达40 kHz,最大图像分辨率为256 px x 128 px。基于与使用标准逐点激光干涉振动计的参考测量值的比较,对新系统进行了验证,并对测量不确定度进行了讨论。最后,说明火焰体积内的折射率波动的测量。

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