利用Comsol Multiphysics数值分析的方法,针对切向流条件下的优化赫姆霍兹共振器进行数值模拟并与传统赫姆霍兹共振器作对比研究。通过分析,可以发现优化后的赫姆霍兹共振器有更好的消声性能。模拟结果表明,优化后的赫姆霍兹共振器可以产生2~3个共振峰,提升了大约120%的消声效率,提高了20 dB左右传递损失值,并且在一定程度上拓宽了消声频带。
Using the method of Comsol multiphysics numerical analysis, the optimized Helmholtz resonator under the condition of tangential flow is numerically simulated and compared with the traditional Helmholtz resonator. Through the analysis, it can be found that the optimized Helmholtz resonator has better noise attenuation performance. The simulation results show that the optimized Helmholtz resonator can produce two or three resonance peaks, which improves the noise elimination efficiency by about 120% and the transfer loss value of about 20 dB, and widens the noise elimination frequency band to a certain extent.
2022,44(7): 62-67 收稿日期:2020-11-24
DOI:10.3404/j.issn.1672-7649.2022.07.012
分类号:TB535
作者简介:吴维维(1993-),男,硕士研究生,研究方向为动力工程
参考文献:
[1] ZHAO D, LI X Y. A review of acoustic dampers applied to combustion chambers in aerospace industry[J]. Progress in Aerospaceences, 2015, 74(4): 114–130
[2] IAIN D J D, DOWLING A P. The use of Helmholtz resonators in a practical combustor[J]. Journal of Engineering Gas Turbines Power, 2005(127): 268–275.
[3] PAN W C, XU X, LI J, et al. Acousitc damping performance of coupled Helmholtz resonators with a sharable perforated sidewall in the presence of grazing flow[J]. Aerospace Science and Technology, 2020, 99(4): 1−9.
[4] ZHAO D, MORGANS A S. Tuned passive control of combustion instabilities using multiple Helmholtz resonators[J]. Journal of Sound & Vibration, 2009, 320(4?5): 744?757.
[5] SELAMET A, XU M B, LEE I J, et al. Helmholtz resonator with absorbing material[J]. Journal of Acoustical Society of America, 2005, 117(2): 725–733.
[6] CAI C, MAK C, SHI X. An extended neck versus a spiral neck of Helmholtz resonator[J]. Applied Acoustiss, 2017, 115(1):74–80.
[7] SELAMET E, SELAMET A, IQBAL A, et al. Effect of flow on helmholtz resonator acoustics: a three-dimensional computational study vs. experiments[J]. SAE Technical Paper 2011-01-1521.