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NOICE FREQUENCY AND VORTICES PROPERTIES ANALYSIS ON INDUSTRIAL BURNERS

机译:工业燃烧器的噪声频率和涡流特性分析

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摘要

Burner configuration has a fundamental effect on combustion chamber performance and durability. The continuous improvement of combustion camera design and the application of materials for high temperature application allow a working regime close to the stability limit of the combustor. In this situation is really important to know the characteristic frequency of the noise due to combustion and vortices evolution. This knowledge is already important for environment and noise pollution reduction. Our research has been done with velocity field measurement techniques (Laser Doppler Anemometer and Particle Image Velocimetry) and noise frequency analyser. As a matter of fact we have investigated on an industrial annular burner and compared the noise effect of two different inner bluff body shapes. Firstly, a cylindrical bluff body has been put inside the burner pipe to point out the coupling between structures evolution and sound properties. Its characteristic frequency of vortices generation is 110 Hz (for an LPG flame). To point out this result we have compared PIV post processing results with sound measurements. Secondly, we used a conical bluff body to increase the flame stabilisation and to improve noise reduction. Ring like vortices evolve steadily downstream the conical stabiliser with a frequency of 1 Hz. The burner, involves a reduction of noise frequency down to 1 Hz. This change in fluid mechanics fixes the flame front at the burner exit, with an improvement of combustion chamber performances.
机译:燃烧器的配置对燃烧室的性能和耐用性有根本影响。燃烧摄像机设计的不断改进和用于高温应用的材料的应用使工作方案接近燃烧器的稳定性极限。在这种情况下,了解由于燃烧和涡流演变而产生的噪声的特征频率非常重要。这些知识对于减少环境和噪音污染已经非常重要。我们的研究已经完成了速度场测量技术(激光多普勒风速计和粒子图像测速仪)和噪声频率分析仪的研究。实际上,我们已经在工业环形燃烧器上进行了研究,并比较了两种不同内部钝体形状的噪声效果。首先,在燃烧器管内放置了一个圆柱状的阻流体,以指出结构演变与声音特性之间的耦合。产生涡流的特征频率为110 Hz(对于LPG火焰)。为了指出这一结果,我们将PIV后处理结果与声音测量结果进行了比较。其次,我们使用了锥形钝体来提高火焰稳定性并改善降噪效果。环状涡流以1 Hz的频率稳定地向圆锥形稳定器的下游扩散。燃烧器将噪音频率降低到1 Hz。流体力学的这种变化将火焰前沿固定在燃烧器出口,从而改善了燃烧室的性能。

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