首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >SUPPRESSION OF INSTABILITIES IN LIQUID FUELED COMBUSTOR BY VARIATION OF FUEL SPRAY PROPERTIES
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SUPPRESSION OF INSTABILITIES IN LIQUID FUELED COMBUSTOR BY VARIATION OF FUEL SPRAY PROPERTIES

机译:燃料喷射特性的变化抑制液体燃烧室的不稳定性

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This paper describes an experimental investigation of the feasibility of using "slow" active control approaches, which change liquid fuel spray properties, to suppress combustion instabilities. The objective of this control approach is to break up the feedback between the combustion process heat release oscillations and the combustor oscillations that drives the instability by changing the characteristics of the combustion process (i.e., characteristic combustion time). To demonstrate the feasibility of such control, this study used a proprietary fuel injector (Nanomiser~(TM)), which can independently vary its fuel spray properties, and investigated the dependence of acoustics-combustion process coupling, i.e., the driving of combustion instabilities, upon the fuel spray properties. The results of this study showed that by changing the spray characteristics it is possible to significantly damp combustion instabilities. Furthermore, using Abel's deconvolution, this study showed that the instabilities were mostly driven in regions where the mean axial flow velocity was approximately zero, in the near field of the vortices that were generated in the combustor. The results of this study strongly suggest that a "slow" active control system that employs controllable injectors could be used to prevent the onset and/or damp detrimental combustion instabilities.
机译:本文描述了使用“慢速”主动控制方法的可行性的实验研究,该方法通过改变液体燃料的喷雾特性来抑制燃烧不稳定性。这种控制方法的目的是通过改变燃烧过程的特征(即特征燃烧时间)来打破燃烧过程中的热释放振荡和燃烧器振荡之间的反馈,该反馈驱动不稳定性。为了证明这种控制的可行性,本研究使用了专有的喷油器(Nanomiser〜),该喷油器可以独立地改变其燃油喷雾特性,并研究了声学-燃烧过程耦合的依赖性,即燃烧不稳定性的驱动因素。 ,对燃油喷雾性能。这项研究的结果表明,通过改变喷雾特性,可以显着抑制燃烧不稳定性。此外,使用Abel反卷积,该研究表明,不稳定性主要是在燃烧器中产生的涡流的近场中,在平均轴向流速近似为零的区域中引起的。这项研究的结果有力地表明,采用可控喷射器的“慢速”主动控制系统可用于防止发生和/或抑制有害的燃烧不稳定性。

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