A Study on Aeolian Tones Generated from Square Cylinders with Rounded Corners

An Aeolian tone, which occurs from the square cylinders with rounded corners, widely changes its frequency and sound pressure level according with the geometry of their cross sections. The purpose of the present research is to clarify the causal relationship with the cross section and the Aeolian to...

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Published inTransactions of the Japan Society of Mechanical Engineers Series B Vol. 69; no. 681; pp. 1113 - 1119
Main Authors FUKANO, Toru, YOSHIDA, Masahiro, KOIKE, Masaru
Format Journal Article
LanguageJapanese
Published The Japan Society of Mechanical Engineers 2003
Subjects
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ISSN0387-5016
1884-8346
DOI10.1299/kikaib.69.1113

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Abstract An Aeolian tone, which occurs from the square cylinders with rounded corners, widely changes its frequency and sound pressure level according with the geometry of their cross sections. The purpose of the present research is to clarify the causal relationship with the cross section and the Aeolian tone, and to determine the cause of its frequency and sound pressure level. The results show that the frequency is affected by the size of the wake. In addition, the flow pattern around the cylinder is divided into two types according to whether the separated airflow reattaches on the body or not. The sound pressure level becomes minimal in the intermediate case of these two flow types, because the vortex shedding in this case is more unsteady and disorganized in space-wise than other cases.
AbstractList An Aeolian tone, which occurs from the square cylinders with rounded corners, widely changes its frequency and sound pressure level according with the geometry of their cross sections. The purpose of the present research is to clarify the causal relationship with the cross section and the Aeolian tone, and to determine the cause of its frequency and sound pressure level. The results show that the frequency is affected by the size of the wake. In addition, the flow pattern around the cylinder is divided into two types according to whether the separated airflow reattaches on the body or not. The sound pressure level becomes minimal in the intermediate case of these two flow types, because the vortex shedding in this case is more unsteady and disorganized in space-wise than other cases.
Author YOSHIDA, Masahiro
KOIKE, Masaru
FUKANO, Toru
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References (1) 藤田•ほか2名,日本機械学会2000年度年会講演論文集(1),947
(6) Sharland, I. J., Sources of noise in axial flow fans J. Sound Vib. (1964)I3,302-322
(5) Curle, N. The influence of solid boundaries upon aerodynamic sound, Pro. Soc. Lond., A231(1955),505-514
(3) 濱川•ほか3名,機論65-635, B(1999),18
(2) 藤田•ほか4名,機論62-593, B(1996),187
(4) 深野•ほか,機論52-480, B(1986),2828
References_xml – reference: (5) Curle, N. The influence of solid boundaries upon aerodynamic sound, Pro. Soc. Lond., A231(1955),505-514
– reference: (6) Sharland, I. J., Sources of noise in axial flow fans J. Sound Vib. (1964)I3,302-322
– reference: (2) 藤田•ほか4名,機論62-593, B(1996),187
– reference: (4) 深野•ほか,機論52-480, B(1986),2828
– reference: (1) 藤田•ほか2名,日本機械学会2000年度年会講演論文集(1),947
– reference: (3) 濱川•ほか3名,機論65-635, B(1999),18
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Snippet An Aeolian tone, which occurs from the square cylinders with rounded corners, widely changes its frequency and sound pressure level according with the geometry...
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SubjectTerms Low-Noise Wind Tunnel
Title A Study on Aeolian Tones Generated from Square Cylinders with Rounded Corners
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