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首页> 外文期刊>International Journal of Spray and Combustion Dynamics >Experimental investigation of combustion instabilities in lean swirl-stabilized partially-premixed flames in single- and multiple-burner setup
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Experimental investigation of combustion instabilities in lean swirl-stabilized partially-premixed flames in single- and multiple-burner setup

机译:单燃烧器和多燃烧器装置中稀薄旋流稳定​​的部分预混火焰中燃烧不稳定性的实验研究

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摘要

In the present work, combustion instabilities of a modular combustor are investigated. The combustor operates with partially premixed, swirl-stabilized flames and can be operated in single- and different multiple-burner setups. The design parameters of the combustor prevent large-scale flame-flame interactions in the multiple-burner arrangements. The objective is to investigate how the interaction of the swirl jets affects the thermoacoustic stability of the combustor. Results of measurements of pressure oscillations and high-speed OH*-chemiluminescence imaging for the single-burner setup and two multiple-burner setups are discussed. Additionally, results of investigations with different flame characteristics are presented. These are achieved by varying the ratio of the mass flow rates through the swirlers of the double-concentric swirl nozzle. Several unstable modes with high pressure amplitudes are observed in the single-burner setup as well as in the multiple-burner setups. Numerical studies of the acoustic behavior of the combustor setups were performed that indicate that the different geometries show similar acoustic behaviors. The results lead to the conclusion that the interaction of the swirl jets in the multiple-burner setups affects the thermoacoustic response spectrum of the flame even in the absence of large-scale flame-flame interactions. Based on the findings in earlier studies, it is concluded that the differences in the flame response characteristics are induced by the reduction of the swirl intensity in the multiple-burner arrangements, which is caused by the exchange of momentum between the adjacent swirl jets.
机译:在目前的工作中,研究了模块化燃烧室的燃烧不稳定性。该燃烧器在部分预混,稳定漩涡的火焰下运行,并且可以在单燃烧器和不同的多燃烧器设置中运行。燃烧器的设计参数可防止多燃烧器装置中的大规模火焰与火焰相互作用。目的是研究旋流的相互作用如何影响燃烧器的热声稳定性。讨论了单燃烧器装置和两个多燃烧器装置的压力振荡和高速OH *化学发光成像的测量结果。此外,还提供了具有不同火焰特性的调查结果。这些是通过改变通过双同心旋流喷嘴的旋流器的质量流率的比率来实现的。在单燃烧器设置和多燃烧器设置中观察到几种具有高振幅的不稳定模式。对燃烧室设置的声学行为进行了数值研究,表明不同的几何形状显示出相似的声学行为。结果得出的结论是,即使在没有大规模火焰-火焰相互作用的情况下,多燃烧器装置中旋流的相互作用也会影响火焰的热声响应谱。根据早期研究的发现,可以得出结论,火焰响应特性的差异是由多燃烧器装置中旋流强度的降低引起的,这是由于相邻旋流喷嘴之间的动量交换引起的。

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