双层穿孔衬板对燃烧室系统声学处理的影响

Wisam S. Hacham, Faisal S. Hiji
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引用次数: 0

摘要

燃烧室的内胆对通过它的气流的响应是燃烧室噪音的关键原因,因此,这些燃烧室的不稳定性降低了这些部分的机械效率,通过增加其机械振动,这增加了由一系列高频率产生的震动传播的裂缝产生的故障率。因此,任何讨论燃烧室内层环境影响的工作都可以提供对由不良振动产生的燃烧噪声的把握,并有利于工业公司设计理想的生产程序,从而延长燃烧室的使用寿命。本文的目的是研究双层圆柱穿孔衬垫的声学处理对燃气轮机声传输损失的影响。通过在赫尔大学声学研究中心的大型声学风洞中插入全尺寸单、双穿孔衬垫的实验数据,研究了衬垫布局对该声学参数的影响。设计声信号的实验测试首先采用0m/s的空气横流速度,然后采用间隔5m/s的变化速度(10m/s ~ 25m/s)。利用MATLAB脚本对射孔衬板插入单层和双层图案时采集的数据进行仿真、分析和计算。实验结果表明,采用射孔声处理后,声传输损失有所降低,特别是在较高的频率水平上。此外,研究结果表明,插入双层尾管的风洞可以改善射孔声学处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of using double layers perforated liners on the acoustic treatments on the combustor systems
The response of the combustor’s liner to the air-flow that passes through it is the key reason for the combustion chambers noise, hence the instabilities of those chambers that decreases the mechanical efficiency of such sections, by increased its mechanical vibrations, which increases the failure rate created during originating of the cracks spreading by the shakes producing by the series of high-level frequencies. Accordingly, any work debating the impact of the context of liners in the combustion chamber can provide grasping for the combustion noise generated by the undesirable vibrations, and benefits the industrial firms to design an ideal production procedure which increases the lifespan of the combustor. The goal of this work is to examine the influence of the acoustic treatment using a double layers cylindrical perforated liner on the acoustic transmission loss of gas turbines. The liners layout influences on this acoustic parameter was examined using an experimental data gained by the insertion of a full scale single and double patterns of perforated liners into the unique large scale acoustic wind tunnel at the acoustic research center at Hull University. The experimental tests under-designed acoustic signals were established firstly using 0m/s air cross-flow velocity, then by changed velocities with interval 5m/s ranging between 10m/s to 25m/s. MATLAB script was used to simulate, analyze, and figure out the data collected the insertion of single and double layer patterns of the perforated liner. The experiments demonstrated that, if the perforation acoustic treatments are applied, the acoustic transmission loss will decrease, particularly obvious at higher level frequencies. Further, the results exposed that the air tunnel with the insertion of the liner with double layers reveals an improved perforation acoustic treatment.
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