首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Interaction Between the Acoustic Pressure Fluctuations and the Unsteady Flow Field Through Circular Holes
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Interaction Between the Acoustic Pressure Fluctuations and the Unsteady Flow Field Through Circular Holes

机译:声压波动与通过圆孔的非恒定流场之间的相互作用

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摘要

Gas turbine combustion systems are prone to thermo-acoustic instabilities, and this is particularly the case for new low emission lean burn type systems. The presence of such instabilities is basically a function of the unsteady heat release within the system (i.e., both magnitude and phase) and the amount of damping. This paper is concerned with this latter process and the potential damping provided by perforated liners and other circular apertures found within gas turbine combustion systems. In particular, the paper outlines experimental measurements that characterize the flow field within the near field region of circular apertures when being subjected to incident acoustic pressure fluctuations. In this way the fundamental process by which acoustic energy is converted into kinetic energy of the velocity field can be investigated. Experimental results are presented for a single orifice located in an isothermal duct at ambient test conditions. Attached to the duct are two loudspeakers that provide pressure fluctuations incident onto the orifice. Unsteady pressure measurements enable the acoustic power absorbed by the orifice to be determined. This was undertaken for a range of excitation amplitudes and mean flows through the orifice. In this way regimes where both linear and nonlinear absorption occur along with the transition between these regimes can be investigated. The key to designing efficient passive dampers is to understand the interaction between the unsteady velocity field, generated at the orifice and the acoustic pressure fluctuations. Hence experimental techniques are also presented that enable such detailed measurements of the flow field to be made using particle image velocimetry. These measurements were obtained for conditions at which linear and nonlinear absorption was observed. Furthermore, proper orthogonal decomposition was used as a novel analysis technique for investigating the unsteady coherent structures responsible for the absorption of energy from the acoustic field.
机译:燃气轮机燃烧系统易于发生热声不稳定性,对于新的低排放稀薄燃烧型系统尤其如此。这种不稳定性的存在基本上是系统内不稳定的热量释放(即幅度和相位)以及阻尼量的函数。本文关注的是后面的过程以及燃气轮机燃烧系统中的穿孔衬里和其他圆形孔提供的潜在阻尼。特别是,本文概述了实验测量,这些实验测量表征了当受到入射声压波动时圆形孔的近场区域内的流场。以此方式,可以研究将声能转换成速度场的动能的基本过程。给出了在环境测试条件下位于恒温管道中的单个孔口的实验结果。连接到管道的是两个扬声器,它们提供入射到孔口的压力波动。非恒定压力测量值可以确定孔口吸收的声功率。这是针对一定范围的激励振幅和通过孔的平均流量进行的。通过这种方式,可以研究线性吸收和非线性吸收同时发生的状态以及这些状态之间的过渡。设计高效被动阻尼器的关键是了解孔口处产生的非恒定速度场与声压波动之间的相互作用。因此,还提出了实验技术,使得能够使用粒子图像测速法对流场进行这种详细的测量。这些测量是在观察到线性和非线性吸收的条件下获得的。此外,适当的正交分解被用作一种新颖的分析技术,用于研究负责从声场吸收能量的不稳定的相干结构。

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