首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >OPTICAL SENSING OF LEAN BLOWOUT PRECURSORS IN A PREMIXED SWIRL STABILIZED DUMP COMBUSTOR
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OPTICAL SENSING OF LEAN BLOWOUT PRECURSORS IN A PREMIXED SWIRL STABILIZED DUMP COMBUSTOR

机译:预混旋流稳定式自燃燃烧室中稀薄喷吹前体的光学传感

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The work described here is part of an effort to detect and prevent lean blowout in turbine engine combustors. The approach uses optical emission, primarily chemi-luminescence, to identify blowout precursor events, and is demonstrated in a premixed, swirl-stabilized dump combustor. The results show that the transient behavior of the Same as lean blowout is approached is characterized by short duration, localized extinction and reignition events. These events increase in frequency and duration, and spatial extent, as LBO is approached. Several methods can be used to detect these events in the raw sensor output, including signal thresholding and frequency analysis. The paper describes examples of how these analysis techniques can be used to calculate a simple LBO proximity measure that would be ideally suited for use in an active (closed-loop) control system. The LBO proximity sensing is also demonstrated using sensor technology that is close to what would be required in a realistic turbine engine environment, specifically, optical fibers to collect the chemiluminescence and miniature, metal package PMTs for detection. Possible detection locations within the combustor are discussed and various locations are compared, based on their practicality and sensitivity to LBO precursor detection. It was found that the best detection was from fiber that was mounted on the head end and viewed downstream.
机译:此处描述的工作是检测和防止涡轮发动机燃烧器中稀薄燃爆的工作的一部分。该方法使用光发射(主要是化学发光)来识别爆裂前驱物事件,并在预混合,旋流稳定的倾卸式燃烧器中得到证明。结果表明,接近稀薄爆燃的瞬时行为具有持续时间短,局部熄灭和重燃事件的特征。随着接近LBO,这些事件的频率和持续时间以及空间范围都会增加。可以使用几种方法来检测原始传感器输出中的这些事件,包括信号阈值和频率分析。本文介绍了如何使用这些分析技术来计算简单的LBO接近度度量的示例,该度量非常适合在主动(闭环)控制系统中使用。还使用了传感器技术来演示LBO接近感测,该技术已接近实际涡轮发动机环境中所需要的技术,特别是用于收集化学发光的光纤和用于检测的微型金属封装PMT。讨论了燃烧器中可能的检测位置,并根据其对LBO前体检测的实用性和敏感性对各个位置进行了比较。发现最好的检测是从安装在头端并在下游观察的光纤进行。

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