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FLAME TRANSFER FUNCTION MEASUREMENTS WITH CH4 AND H2 FUEL MIXTURES AT ULTRA WET CONDITIONS IN A SWIRL STABILIZED PREMIXED COMBUSTOR

机译:用CH4和H2燃料混合物在旋流稳定预混燃烧器中用CH4和H2燃料混合物进行火焰传递函数测量

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The influence of humidity and fuel composition on thermoacoustic flame characteristics is investigated. This is an important aspect in the development of combustion chambers for humidified gas turbines. Thermoacoustic issues are in the focus of the current investigation. These pressure pulsations result from the interaction of combustor acoustics with an unsteady heat release of the flame and have a negative influence on the combustion process and can even damage components of the engine. A key point concerning combustion dynamics is the role of convective time lags which are determined by the temporal delay between the appearance of a perturbation and the response of the flame. Experiments are conducted with different fuel mixtures containing natural gas, hydrogen, and nitrogen, each with steam contents in the air mass flow of up to 40%. The multi-microphone method and OH~* chemiluminescence measurements with a photomultiplier and an intensified CCD camera are used to determine the flame transfer function and flame dynamics. It is observed that the characteristics of the flame response are related to the flame shape and position rather than to the fuel composition or the steam content. Using a Strouhal-number normalization based on the bulk velocity of the annular jet and the distance between fuel injection and the flame, a good agreement between the phases of the flame transfer functions of all flames attached to the burner outlet is found.
机译:研究了湿度和燃料组合物对热声火焰特性的影响。这是加湿燃气轮机燃烧室开发的一个重要方面。热门问题处于当前调查的重点。这些压力脉动是由燃烧室声学的相互作用导致火焰的不稳定热释放并且对燃烧过程具有负影响,并且甚至可以损坏发动机的部件。关于燃烧动态的关键点是对流时间滞后的作用,该对流时间滞后由扰动外观与火焰的响应之间的时间延迟决定。实验用不同的燃料混合物进行含有天然气,氢气和氮的,每个燃料含量在空气质量含量高达40%。使用光电倍增器和强化CCD相机的多麦克风方法和OH〜*化学发光测量来确定火焰传递函数和火焰动态。观察到火焰响应的特性与火焰形状和位置而不是燃料组合物或蒸汽含量有关。使用基于环形射流的散装速度的Strouhal数标准化和燃料喷射与火焰之间的距离,找到了连接到燃烧器出口的所有火焰的火焰传递函数的阶段之间的良好一致性。

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