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Application of Ply measurement techniques to study the characteristics of flame-acoustic wave interactions

机译:Ply测量技术在研究火焰-声波相互作用特性中的应用

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The present paper introduce the development of the experimental setup and measurement methodologies to study the structure of acoustic wave and the interaction between the acoustic fields and flame flow inside a square tube by using a time-resolved Particle Image Velocimetry (Ply). The design of signal synchronisation system, the selection of seeding particles, the test of seeding methods and the statistical analysis of the PIV data were introduced. The titanium dioxide (TiO2) was selected as the seeding particle for the PIV. The accuracy of synchronisation system was checked by a simple experiment. A time-resolved PIV results showed that the acoustic velocity difference was less than 2.8% at specific phase angle over 1000 excitation cycles at an excitation frequency of 385 Hz. For the case of hot flame gas, the largest difference is 4.4% over 100 excitation cycles at an excitation frequency of 10 Hz. Results proves that the present experimental system has high reliability to measure and analyse the characteristics of flame-acoustic interactions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了使用时间分辨粒子图像测速仪(Ply)来研究声波的结构以及声波与方管内火焰流之间相互作用的实验装置和测量方法的发展。介绍了信号同步系统的设计,播种粒子的选择,播种方法的测试以及PIV数据的统计分析。选择二氧化钛(TiO2)作为PIV的种子粒子。通过一个简单的实验检查了同步系统的准确性。时间分辨的PIV结果表明,在385 Hz的激发频率下,经过1000个激发循环,在特定的相角下,声速差小于2.8%。对于热火焰气体,在10 Hz的激发频率下,在100个激发循环中,最大差异为4.4%。结果证明,本实验系统具有较高的测量和分析火焰声相互作用特征的可靠性。 (C)2015 Elsevier Ltd.保留所有权利。

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