期刊文献+

FEM Analysis on Acoustic Performance of Wall Flow Diesel Particulate Filters 被引量:4

FEM Analysis on Acoustic Performance of Wall Flow Diesel Particulate Filters
下载PDF
导出
摘要 Diesel powered vehicles, in compliance with the more strict exhaust emission standards such as Euro V, is likely to require a diesel particulate filter (DPF). A DPF used on a vehicle will affect the acoustic emission of the diesel engine, so it is important to investigate the sound propagation rule in DPF and further to propose the optimum DPF design. However, due to the geometrical complexity of the DPF, the traditional analysis method, such as analytical method, can not assess the acoustic performance of DPF accurately in medium and high frequency band. In this paper, a combined approach of finite element analysis and viscosity correction is proposed to predict acoustic performance of DPF. A simplified model of the full DPF is established and is used to analyze the sound propagation characteristic of the DPF. The distribution of the sound pressure and velocity, the transmission matrix of the DPF are obtained using the finite element method. In addition, the method of the viscosity correction is used in the transmission matrix of the DPF to evaluate the acoustic performance of DPF. Based on the FEM computation and the viscosity correction, the transmission losses under the rated load and idle condition of a diesel engine are calculated. The calculation results show that DPF can effectively attenuate exhaust noise, and sound attenuation increase with the rise of the frequency. Sound attenuation is better under rated condition than idle condition of diesel engine, particularly in frequency above 1 000 Hz. Diesel powered vehicles, in compliance with the more strict exhaust emission standards such as Euro V, is likely to require a diesel particulate filter (DPF). A DPF used on a vehicle will affect the acoustic emission of the diesel engine, so it is important to investigate the sound propagation rule in DPF and further to propose the optimum DPF design. However, due to the geometrical complexity of the DPF, the traditional analysis method, such as analytical method, can not assess the acoustic performance of DPF accurately in medium and high frequency band. In this paper, a combined approach of finite element analysis and viscosity correction is proposed to predict acoustic performance of DPF. A simplified model of the full DPF is established and is used to analyze the sound propagation characteristic of the DPF. The distribution of the sound pressure and velocity, the transmission matrix of the DPF are obtained using the finite element method. In addition, the method of the viscosity correction is used in the transmission matrix of the DPF to evaluate the acoustic performance of DPF. Based on the FEM computation and the viscosity correction, the transmission losses under the rated load and idle condition of a diesel engine are calculated. The calculation results show that DPF can effectively attenuate exhaust noise, and sound attenuation increase with the rise of the frequency. Sound attenuation is better under rated condition than idle condition of diesel engine, particularly in frequency above 1 000 Hz.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第4期701-706,共6页 中国机械工程学报(英文版)
基金 supported by National Hi-tech Research and Development Program of China (863 Program, Grant No. 2009AA045103 ) Tianjin Provincial Natural Science Foundation of China (Grant No. 05YFJMJC10700)
关键词 diesel particulate filter acoustic performance FEM model viscosity correction diesel particulate filter acoustic performance FEM model viscosity correction
  • 相关文献

参考文献1

二级参考文献6

  • 1高文志,冯黎明,刘建国,关顺吉.柴油机微粒过滤器的压降与声传播特性研究[J].内燃机学报,2006,24(1):92-95. 被引量:2
  • 2杨道胜,史宗冈,范亦工.美国重负荷柴油机油新规格CJ-4的发展及其影响[J].石油商技,2006,24(6):42-46. 被引量:9
  • 3ALLAM S, ABOM M. Sound propagation in an array of narrow porous channels with application to diesel particulate filters[J]. Journal of Sound and Vibration, 2006,291(4): 882-901.
  • 4ALLAM S, ABOM M. On acoustic modeling and testing of diesel particulate filters[C]// The 2002 International Congress and Exposition on Noise Control Engineering, Dearborn, MI, USA, August 19-21, 2002: 250.
  • 5ALLAM S, ABOM M. On transmission of sound in diesel particulate filters(DPF: s)[C]//Tenth International Congress on Sound and Vibration, Stockholm, Sweden, July 7-10, 2003:3 187-3 194.
  • 6ALLAM S, ABOM M. Acoustic modeling and testing of diesel particulate filters[J]. Journal of Sound and Vibration, 2005, 288: 255-273.

共引文献3

同被引文献40

  • 1张群,卫海桥,舒歌群,梁兴雨,王养军,刘岳文.高压共轨发动机降噪及其性能对噪声的影响[J].机械工程学报,2009,45(11):58-64. 被引量:5
  • 2孟子厚,赵凤杰.民乐片段混响感主观偏爱度的初步实验[J].应用声学,2007,26(1):41-45. 被引量:14
  • 3SCHIFFB(A)NKER H,BRANDL F K,THIEN G E.Development and application of an evaluation technique to assess the subjective character of engine noise[R].SAE,911081,1991.
  • 4HUSSAIN M,G(O)LLES J,RONACHER A,et al.Statistical evaluation of an annoyance index for engine noise recordings[R].SAE,911080,1991.
  • 5SCHNEIDER M,WILHELM M,ALT N.Development of vehicle sound quality-targets and methods[R].SAE,951283,1995.
  • 6LEE H A.Sound quality of diesel engines[D].Indiana:Purdue University,2004.
  • 7RUSSELL M F,WORLEY S A,YOUNG C D.Towards an objective estimate of the subjective reaction to diesel engine noise[R].SAE,870958,1987.
  • 8CHAMPAGNE A J,SHIAU N M.Commercial van desel idle sound quality[R].SAE,971980,1997.
  • 9AMMAN S,BLOMMER M,GREENBERG J.An auditory model for the prediction of detection thresholds of impulsive a sound events[J].Journal of the Acoustical Society of American,2000,108(5):2527-2527.
  • 10HASHIMOTO T.Sound quality approach on vehicle interior and exterior noise-quantification of frequency related attributes and impulsiveness[J]. Acoustical Science and Technology,2000,21(6):337-340.

引证文献4

二级引证文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部