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ACOUSTIC DETECTION OF IMMINENT BLOWOUT IN PILOT AND SWIRL STABILIZED COMBUSTORS

机译:在飞行员和旋流稳定燃烧器中迫在眉睫的声学检测

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This paper describes an experimental effort to characterize the acoustic emissions of lean, premixed combustors operating near blowout conditions. Its objective is to use measurements of the flame's acoustic signature to determine the proximity of the combustor to incipient blowout. The feasibility of the method was performed on two combustors with fundamentally different flame holding methods: externally anchored pilot and swirl-stabilized. Acoustic measurements indicate that the low frequency spectrum exhibits a strong dependence upon the degree of flame stabilization. High speed intensified camera images of the flame were also taken to get a better understanding of the unsteady flame dynamics. In the piloted burner, it became visibly obvious that the flame was approaching blowoff by increased flickering unsteadiness, and non-symmetric flame attachment. The results from the swirl burner, however, show that the blow-off transient was characterized by short duration, localized extinction and re-ignition events. These events increase in frequency and duration as blowout is approached. Several data analysis approaches using spectral, statistical and wavelet techniques with varying degrees of sensitivity are shown to be capable of detecting precursors to blowout for both burners.
机译:本文介绍了在井喷条件附近运行的瘦益,预混燃烧器的声排放的实验努力。其目的是使用火焰的声学签名的测量来确定燃烧器令人兴奋地爆炸的附近。该方法的可行性在两个燃烧器上进行,具有根本不同的火焰保持方法:外部锚固的飞行员并旋涡稳定。声学测量表明低频频谱对火焰稳定程度具有很强的依赖性。还采用了高速增强的相机图像,以更好地了解不稳定的火焰动态。在试验燃烧器中,它变得明显明显,火焰通过增加闪烁不稳定和非对称火焰附着而接近吹气。然而,旋流燃烧器的结果表明,吹除瞬态的特点是持续时间短,局部灭绝和重新点火事件。这些事件随着井喷的频率和持续时间增加而增加。使用具有不同程度的灵敏度的光谱,统计和小波技术的几种数据分析方法能够检测前体以吹出两个燃烧器。

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