An Approximate Analysis on Fluttering of Membrane Suspended in Uniform Aft Flow
A membrane specimen, PTFE-coated glass fiber fabric, suspended between supports in the uniform air flow in wind tunnel began to flutter at a critical flow speed . This fluttering behavior was modeled as a sinusoidal travelling wave, and was analysed with an approximate method applying thin-airfoil t...
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Published in | Nihon Kaze Kougakkaishi Vol. 1995; no. 64; pp. 29 - 38 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Japan Association for Wind Engineering
1995
|
Online Access | Get full text |
ISSN | 0912-1935 1883-8413 |
DOI | 10.5359/jawe.1995.64_29 |
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Abstract | A membrane specimen, PTFE-coated glass fiber fabric, suspended between supports in the uniform air flow in wind tunnel began to flutter at a critical flow speed . This fluttering behavior was modeled as a sinusoidal travelling wave, and was analysed with an approximate method applying thin-airfoil theory and Hamilton's principle . By the analysis the flutter oscillation period-membrane stress curves were shown. The coincidence between the analytical and experimental results was confirmed by study on these curves, and the theoretical or practical region of the flow speed where the fluttering occurs was described. Some applied calculations were performed. |
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AbstractList | A membrane specimen, PTFE-coated glass fiber fabric, suspended between supports in the uniform air flow in wind tunnel began to flutter at a critical flow speed . This fluttering behavior was modeled as a sinusoidal travelling wave, and was analysed with an approximate method applying thin-airfoil theory and Hamilton's principle . By the analysis the flutter oscillation period-membrane stress curves were shown. The coincidence between the analytical and experimental results was confirmed by study on these curves, and the theoretical or practical region of the flow speed where the fluttering occurs was described. Some applied calculations were performed. |
Author | KAWAMURA, Sumio MINAMI, Hirokazu OKUDA, Yasuo |
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References | 4) Kawamura, S and Cermak, J. E: Aerodynamic Behavor of Suspension Roofs (Second Report), Colorado State Univ., CEP70-71SK-JEC-26B, 1970 17) Minami, H., Okuda, Y and Kawamura, S.: Experimental Studies on the Flutter Behavour of Membraue in a Wind Tunnel, Space Structures 4, Thomas Telford, London, Vol.1, 1993, pp.935-945 2) 石崎溌雄, 成仁換, 熊取辰也: 吊屋根の風洞実験, 日本建築学会論文報告集, 126, 1996, pp.9-13 3) 川村純夫, 辻英‥: 吊屋根面の風による振動について (I) 天幕の一様流れの中での振動, 日本建築学会大会学術講演梗概集 (北海道), 1969, PP.737-738 5) Kawamura, S and Cermak, J. E: Aerodynamic Response of Hanging Roof, Colorado State Univ., CEP71-72SK-JEC-5, 1970 9) 三宅昭春, 占村建, 森下正浩, 園田東二: 一方向吊屋根のフラッターに関する基礎的研究, 日本建築学会論文報告集, 367, 1986, pp.375-46 16) Tryggvason, B.V: Aeroelastic Modelling of Pneumatic and Tensioned Fabric Struotures, Rroc. 5th Int. Conf on Wind Eng., 1981, pp.1061-1072 11) Williams, C, J, K: Trvelling Waves and Standing Waves on Fabric Structures, Struct. Eng., Vol.68, No.21, 1990, pp.432-438 12) Kunieda, K: Flutter of Hanging Roofs and Curved Membrane Roofs, Int. J. Solids Structrues, Vol.11, 1975, pp.477-492 6) 川村純夫, 木本英爾: 一方向型吊屋根構造の耐風安定性その1現象, 日本建築学会論文報告集, 275, 1979, PP.9-14 15) 玉田光: 流れの中の布の振動, 第21回日本物理学会年回講演予講集, 1966, p.90 10) 内山和夫, 山田大彦, 植松康: 吊屋根の風による動的挙動, 風工学シンポジウム, 1982, pp,327-338 13) Kawabata, S: The Standardization and Analysis Df Hand Evaluation, The Hand Evaluation and Standardization Committee, The Textile Machinery Society Japan, 1980 7) 川村純夫, 木本英爾: 方向型吊屋根構造の耐風安定性その2理論的考察, 日本建築学会論文報告集, 277, 1979, pp.55-61 8) Matumoto. T: An Investlgation on the Response of Pretensioned one-Way Typo Suspension Roofs to Wind Action. J. Wind Eng. and Ind. Aerod., 13, 1983, pp.383-394 14) Bisplinghoff, R.l et al.: Aeroelasticity, Addison Wesley Publishing Company, Inc., 1955 1) Siev, A: Experimental Study of Fiutter in Suspended Roofs, Bull. IASS, No.23, 1965. 9, pp.3-10 |
References_xml | – reference: 13) Kawabata, S: The Standardization and Analysis Df Hand Evaluation, The Hand Evaluation and Standardization Committee, The Textile Machinery Society Japan, 1980 – reference: 4) Kawamura, S and Cermak, J. E: Aerodynamic Behavor of Suspension Roofs (Second Report), Colorado State Univ., CEP70-71SK-JEC-26B, 1970 – reference: 14) Bisplinghoff, R.l et al.: Aeroelasticity, Addison Wesley Publishing Company, Inc., 1955 – reference: 6) 川村純夫, 木本英爾: 一方向型吊屋根構造の耐風安定性その1現象, 日本建築学会論文報告集, 275, 1979, PP.9-14 – reference: 3) 川村純夫, 辻英‥: 吊屋根面の風による振動について (I) 天幕の一様流れの中での振動, 日本建築学会大会学術講演梗概集 (北海道), 1969, PP.737-738 – reference: 5) Kawamura, S and Cermak, J. E: Aerodynamic Response of Hanging Roof, Colorado State Univ., CEP71-72SK-JEC-5, 1970 – reference: 10) 内山和夫, 山田大彦, 植松康: 吊屋根の風による動的挙動, 風工学シンポジウム, 1982, pp,327-338 – reference: 9) 三宅昭春, 占村建, 森下正浩, 園田東二: 一方向吊屋根のフラッターに関する基礎的研究, 日本建築学会論文報告集, 367, 1986, pp.375-46 – reference: 2) 石崎溌雄, 成仁換, 熊取辰也: 吊屋根の風洞実験, 日本建築学会論文報告集, 126, 1996, pp.9-13 – reference: 15) 玉田光: 流れの中の布の振動, 第21回日本物理学会年回講演予講集, 1966, p.90 – reference: 17) Minami, H., Okuda, Y and Kawamura, S.: Experimental Studies on the Flutter Behavour of Membraue in a Wind Tunnel, Space Structures 4, Thomas Telford, London, Vol.1, 1993, pp.935-945 – reference: 12) Kunieda, K: Flutter of Hanging Roofs and Curved Membrane Roofs, Int. J. Solids Structrues, Vol.11, 1975, pp.477-492 – reference: 7) 川村純夫, 木本英爾: 方向型吊屋根構造の耐風安定性その2理論的考察, 日本建築学会論文報告集, 277, 1979, pp.55-61 – reference: 8) Matumoto. T: An Investlgation on the Response of Pretensioned one-Way Typo Suspension Roofs to Wind Action. J. Wind Eng. and Ind. Aerod., 13, 1983, pp.383-394 – reference: 16) Tryggvason, B.V: Aeroelastic Modelling of Pneumatic and Tensioned Fabric Struotures, Rroc. 5th Int. Conf on Wind Eng., 1981, pp.1061-1072 – reference: 11) Williams, C, J, K: Trvelling Waves and Standing Waves on Fabric Structures, Struct. Eng., Vol.68, No.21, 1990, pp.432-438 – reference: 1) Siev, A: Experimental Study of Fiutter in Suspended Roofs, Bull. IASS, No.23, 1965. 9, pp.3-10 |
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Title | An Approximate Analysis on Fluttering of Membrane Suspended in Uniform Aft Flow |
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