首页> 外文会议>2002 ASME (American Society of Mechanical Engineers) Turbo Expo, Jun 3-6, 2002, Amsterdam, the Netherlands >INVESTIGATION OF THE RESPONSE OF AN AIR BLAST ATOMIZER COMBUSTION CHAMBER CONFIGURATION ON FORCED MODULATION OF AIR FEED AT REALISTIC OPERATING CONDITIONS
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INVESTIGATION OF THE RESPONSE OF AN AIR BLAST ATOMIZER COMBUSTION CHAMBER CONFIGURATION ON FORCED MODULATION OF AIR FEED AT REALISTIC OPERATING CONDITIONS

机译:真实运行条件下空气鼓风燃烧室构型对送风强迫调制的响应研究

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DLR investigated forced combustion oscillations of two liquid fuel burners in a research combustion chamber at elevated pressures simulating idle conditions of aircraft engine combustors. The work was performed in collaboration with MTU Munich. An existing combustion chamber with optical access, capable to operate up to 20 bar, was upgraded with an air flow pulsator, that bypasses air from the combustor plenum to the exhaust with a sinusoidal massflow variation up to 700 Hz. Pressure transducers in the plenum and the flame tube monitored the forced disturbances. A photomultiplier recorded the OH~8 chemiluminescence of the flame. For the agreed operating conditions frequency scans of these values were registered. Additionally images of the OH~* chemiluminescence were taken at selected frequencies and evaluated in a statistical manner, to separate turbulent and periodic behaviour. From the analysis of the pressure data, it can be concluded, that serious thermo-acoustic feedback was not observed for both burners. However burner 2 with the flame detached from the wall exhibited a higher fluctuation level as burner 1 with the wall attached flame. A resonant behaviour was observed near the characteristic frequency of the sound room comprised of plenum, flame tube and burner nozzle as connecting passage. The chemiluminescence images show different modes of spatial fluctuation for the burners and for burner 2 they also vary with the operating condition.
机译:DLR在研究燃烧室的高压下研究了两个液体燃料燃烧器的强迫燃烧振荡,以模拟飞机发动机燃烧器的怠速工况。这项工作是与慕尼黑MTU合作完成的。现有的具有光学通道的燃烧室能够运行至20 bar,并配备了气流脉动器,可将空气从燃烧器增压室旁路到排气,其正弦质量流量变化高达700 Hz。气室和火焰管中的压力传感器监控强制干扰。光电倍增管记录了火焰的OH〜8化学发光。对于商定的工作条件,记录了这些值的频率扫描。另外,以选定的频率拍摄OH〜*化学发光的图像,并以统计方式进行评估,以分离湍流和周期性行为。从对压力数据的分析可以得出结论,两个燃烧器均未观察到严重的热声反馈。然而,与壁上附着有火焰的燃烧器1相比,火焰从壁上脱离的燃烧器2表现出更高的波动水平。在由充气室,火焰管和燃烧器喷嘴组成的声室的特征频率附近观察到共振行为。化学发光图像显示了燃烧器的空间波动的不同模式,而对于燃烧器2,它们也随操作条件而变化。

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