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Application of the hydroxyl tagging velocimetry to direct-connect supersonic combustor experiment

机译:羟基标记测速法在超音速燃烧室直接连接实验中的应用

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For the purpose of measuring the flow velocity in a scramjet test model, an special designed measurement system was established, including the strong vibration suppression, optical transport consideration, the movable device etc. The interference of the strong vibration to the velocity measurements was avoided by two ICCD cameras capturing the reference tag lines image and moved tag lines image together during an experiment. According to the tag lines image feature, data processing including correlation algorithm, data fitting by a Gauss function were used respectively to extract the positions of the reference tag lines and the moved tag lines. The velocity measurements were carried out at the isolation section and the cavity section. The results showed that the well SNR could be achieved in the H2/air combustion heating flow, but in the kerosene fuel combustion flow, the measurements images might be interfered by the strong OH background from the chemical reaction, and the signal intensity could be reduced due to the tag laser attenuation through the absorption by kerosene vapor. But when the combustor model was run at a low chemical equivalent, the interference could be suppressed to an accepted level.
机译:为了在超燃冲压试验模型中测量流速,建立了专门设计的测量系统,包括强振动抑制,光学传输考虑,可移动设备等。在实验过程中,两个ICCD摄像机同时捕获了参考标记线图像和移动的标记线图像。根据标签线图像特征,分别使用包括相关算法的数据处理,通过高斯函数拟合的数据来提取参考标签线和移动的标签线的位置。在隔离部分和空腔部分进行速度测量。结果表明,在H2 /空气燃烧加热流中可达到良好的信噪比,但在煤油燃料燃烧流中,化学反应产生的强OH背景可能会干扰测量图像,从而降低信号强度由于标签激光通过煤油蒸气的吸收而衰减。但是,当燃烧室模型以低化学当量运行时,干扰可被抑制到可接受的水平。

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