全尺寸扇形燃烧室等温流场动力学研究

IF 2.3 3区 工程技术 Q2 ENGINEERING, MECHANICAL Experiments in Fluids Pub Date : 2025-01-11 DOI:10.1007/s00348-024-03953-3
Darshan Rathod, Pratikash Panda, Saptarshi Basu
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引用次数: 0

摘要

对全尺寸环形燃气轮机燃烧室的扇形(\(20^\circ\))进行了实验研究。扇形燃烧室是光学可达的流动和火焰可视化的主要和出口区域的燃烧室。实验装置的独特之处在于它保留了环形燃烧室的几何细节,包括壳体、圆顶和燃烧室内衬。燃烧室的设计特点是一系列的初级和次级稀释孔与多个膜冷却条的外层和内层。本文在扇形燃烧室的中心纵向面和两个方位面进行了时间分辨粒子图像测速(PIV)实验,以了解扇形燃烧室的动力学特性。对数据进行适当的正交分解(POD),得到燃烧室的主导动力学。阐明了旋流场的主要相干结构、主要稀释射流流场以及旋流与稀释射流的主要相互作用。方位角平面数据提供了稀释射流动力学的三维解释。发现出口区的动力学受到二次稀释射流动力学的影响。从记录的声学(\(p^\prime\))信号和POD特征模态的时间系数说明了动力学的频谱特性。此外,通过阻断稀释射流(无dj)进行实验。这些实验数据有助于确定主导频率(\(f_\textrm{d}\))在燃烧室内的来源,这是发现旋涡流动不稳定。没有dj的数据也显示了稀释射流在对流涡流产生的声学到出口区的作用。使用POD重建的流场提供了对扇形燃烧室内发生的动力学的物理见解。
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Insights into the dynamics of full-scale sector combustor isothermal flow field

An experimental investigation in a sector (\(20^\circ\)) of a full-scale annular gas turbine combustor is performed. The sector combustor is optically accessible for the flow and flame visualization of the primary and exit zones of the combustor. The distinctive feature of the experimental setup is that it preserves the geometrical details of an annular combustor, which includes the casing, dome, and combustor liner. The combustor design features a series of primary and secondary dilution holes with multiple film cooling strips on the outer and inner liner. In the present study, the time-resolved particle image velocimetry (PIV) experiments are conducted on the central longitudinal plane and two azimuthal planes to gain insight into the dynamics of the sector combustor. Proper orthogonal decomposition (POD) is applied to the data to obtain the dominant dynamics of the combustor. The major coherent structures of the swirl flow field, the primary dilution jets flow field, and the dominant interaction of swirl and dilution jets are elucidated here. The azimuthal plane data provide a three-dimensional explanation of dilution jet dynamics. The dynamics of the exit zone is found to be influenced by the secondary dilution jet dynamics. The spectral properties of dynamics are illustrated from the recorded acoustic (\(p^\prime\)) signal and the time coefficient of the POD eigenmodes. Further, the experiments are performed by blocking the dilution jets (without-DJ). These experimental data help to identify the source of the dominating frequency (\(f_\textrm{d}\)) within the combustor, which is found to be the swirl flow instabilities. Without-DJ data also showcases the role of dilution jets in convecting the swirl flow generated acoustics to the exit zone. The reconstructed flow field using POD provides physical insights into the dynamics occurring within the sector combustor.

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来源期刊
Experiments in Fluids
Experiments in Fluids 工程技术-工程:机械
CiteScore
5.10
自引率
12.50%
发文量
157
审稿时长
3.8 months
期刊介绍: Experiments in Fluids examines the advancement, extension, and improvement of new techniques of flow measurement. The journal also publishes contributions that employ existing experimental techniques to gain an understanding of the underlying flow physics in the areas of turbulence, aerodynamics, hydrodynamics, convective heat transfer, combustion, turbomachinery, multi-phase flows, and chemical, biological and geological flows. In addition, readers will find papers that report on investigations combining experimental and analytical/numerical approaches.
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