A wall-mounted source array for the excitation of incoherent broadband sound fields with prescribed modal distributions in ducts
In the analysis of broadband sound fields in ducts, for example, turbofan engines, large exhaust stacks, and exhaust mufflers, the assumption of ‘Equal Energy per Mode’ (EEpM) is frequently made. The practical realization of such a sound fields is valuable as a means of, for example, allowing liner...
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Published in | Journal of sound and vibration Vol. 290; no. 1; pp. 490 - 499 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
London
Elsevier Ltd
21.02.2006
Elsevier |
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Abstract | In the analysis of broadband sound fields in ducts, for example, turbofan engines, large exhaust stacks, and exhaust mufflers, the assumption of ‘Equal Energy per Mode’ (EEpM) is frequently made. The practical realization of such a sound fields is valuable as a means of, for example, allowing liner attenuation measurements obtained from measurements on different test rigs to be compared directly, or for allowing measurements results to be compared with computer predictions in which the assumption is made. This paper describes a technique in which arrays of sound sources at the wall of a duct are driven by white noise signals to generate a sound field of prescribed modal energy distribution and modal coherence. The number of sources required for effective mode synthesis and the source geometry are also discussed. An example is presented in which ‘EEpM’ broadband sound field is generated up to a maximum non-dimensional frequency of
ka
=
20
using 152 sources. |
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AbstractList | In the analysis of broadband sound fields in ducts, for example, turbofan engines, large exhaust stacks, and exhaust mufflers, the assumption of ‘Equal Energy per Mode’ (EEpM) is frequently made. The practical realization of such a sound fields is valuable as a means of, for example, allowing liner attenuation measurements obtained from measurements on different test rigs to be compared directly, or for allowing measurements results to be compared with computer predictions in which the assumption is made. This paper describes a technique in which arrays of sound sources at the wall of a duct are driven by white noise signals to generate a sound field of prescribed modal energy distribution and modal coherence. The number of sources required for effective mode synthesis and the source geometry are also discussed. An example is presented in which ‘EEpM’ broadband sound field is generated up to a maximum non-dimensional frequency of
ka
=
20
using 152 sources. In the analysis of broadband sound fields in ducts, for example, turbofan engines, large exhaust stacks, and exhaust mufflers, the assumption of 'Equal Energy per Mode' (EEpM) is frequently made. The practical realization of such a sound fields is valuable as a means of, for example, allowing liner attenuation measurements obtained from measurements on different test rigs to be compared directly, or for allowing measurements results to be compared with computer predictions in which the assumption is made. This paper describes a technique in which arrays of sound sources at the wall of a duct are driven by white noise signals to generate a sound field of prescribed modal energy distribution and modal coherence. The number of sources required for effective mode synthesis and the source geometry are also discussed. An example is presented in which `EEpM' broadband sound field is generated up to a maximum non-dimensional frequency of ka = 20 using 152 sources. |
Author | Jeong, Wontae Joseph, P. Lee, Soogab |
Author_xml | – sequence: 1 givenname: Wontae surname: Jeong fullname: Jeong, Wontae email: wontae@snu.ac.kr organization: Technical Research Institute, Hyundai Mobis, Gyenggi-do 80-10, Korea – sequence: 2 givenname: Soogab surname: Lee fullname: Lee, Soogab organization: Center for Environmental Noise and Vibration Research, School of Mechanical & Aerospace, Seoul National University, Seoul 151-744, Korea – sequence: 3 givenname: P. surname: Joseph fullname: Joseph, P. organization: Institute of Sound and Vibration Research, University of Southampton, Highfield, Southampton SO17 1BJ, UK |
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Cites_doi | 10.1121/1.426875 10.1016/S0022-460X(73)80249-4 10.2514/3.60984 |
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Keywords | Energy distribution Large pipe Sound source Passive system Experimental study Noise control Silencer Wide band Sound analysis Coherence White noise Lining Turbofan engine Engine exhaust |
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References | Rice (bib1) 1978; 16 Snakowska (bib3) 1993; 79 Joseph, Morfey, Lowis (bib4) 2003; 264 Doak (bib5) 1973; 31 Joseph, Morfey (bib2) 1999; 105 Doak (10.1016/j.jsv.2004.12.025_bib5) 1973; 31 Snakowska (10.1016/j.jsv.2004.12.025_bib3) 1993; 79 Rice (10.1016/j.jsv.2004.12.025_bib1) 1978; 16 Joseph (10.1016/j.jsv.2004.12.025_bib2) 1999; 105 Joseph (10.1016/j.jsv.2004.12.025_bib4) 2003; 264 |
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Snippet | In the analysis of broadband sound fields in ducts, for example, turbofan engines, large exhaust stacks, and exhaust mufflers, the assumption of ‘Equal Energy... In the analysis of broadband sound fields in ducts, for example, turbofan engines, large exhaust stacks, and exhaust mufflers, the assumption of 'Equal Energy... |
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SubjectTerms | Acoustic signal processing Acoustics Exact sciences and technology Fundamental areas of phenomenology (including applications) Noise: its effects and control Physics |
Title | A wall-mounted source array for the excitation of incoherent broadband sound fields with prescribed modal distributions in ducts |
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