JIS Z 8736-1:1999 音響―音響インテンシティによる騒音源の音響パワーレベルの測定方法―第1部:離散点による測定 | ページ 5

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Z 8736-1:1999 (ISO 9614-1:1993)
附属書E(参考) 文献
[1] ISO 2204 : 1979, Acoustics−Guide to International Standards on the measurement of air-borne acoustical noise
and evaluation of its effects on human beings
[2] ISO 3740 : 1980, Acoustics−Determination of sound power levels of noise sources−Guidelines for the use of
basic standards and for the preparation of noise test codes
[3] ISO 3741 : 1988, Acoustics−Determination of sound power levels of noise sources−Precision methods for
broadband sources in reverberation rooms
[4] ISO 3742 : 1988, Acoustics−Determination of sound power levels of noise sources−Precision methods for
discrete-frequency and narrow-band sources in reverberation rooms
[5] ISO 3743 : 1988, Acoustics−Determination of sound power levels of noise sources−Engineering methods for
special reverberation test rooms
[6] ISO 3744 : 1981, Acoustics−Determination of sound power levels of noise sources−Engineering methods for
freefield conditions over a reflecting plane
[7] ISO 3745 : 1977, Acoustics−Determination of sound power levels of noise sources−Precision methods for
anechoic and semi-anechoic rooms
[8] ISO 3746 : 1979, Acoustics−Determination of sound power levels of noise sources−Survey method
[9] ISO 3747 : 1987, Acoustics−Determination of sound power levels of noise sources−Survey method using a
reference sound source
[10] ISO/TR 7849 : 1987, Acoustics−Estimation of airborne noise emitted by machinery using vibration
measurement
[11] BENOIT, R. et al. Analysis of sound power measurements via intensity for a spinning frame. Inter-noise 85
(Munich), 1985, pp.1131-1134
[12] BOCKHOFF, M. Sound power determination by intensity measurements in the near-field of a vibrating panel.
Internoise 85 (Munich), 1985, pp.1135-1138
[13] BOCKHOFF, M. et al. Messungsicherheit bei der Schalleistungsbestimmung nach dem
Intensittsmessverfahren. DAGA 87 (Aachen), 1987, pp.789-792
[14] BOCKHOFF, M. et al. Sound power determination of machines by intensity technique. Inter-noise 88
(Avignon), 1988 , pp.1125-1128
[15] CROCKER, M. J. The use of existing and advanced intensity techniques to identify noise sources of a Diesel
engine. SAE 810694, 1981
[16] FAHY, F. J. Sound Intensity, Elsevier Applied Science, London, 1989
[17] HBNER, G. Development of requirements for an intensity measurement code determining sound power level
of machines under (worst) n situ conditions. Inter-noise 84 (Honolulu, USA), 1984, pp.1093-1098
[18] HBNER, G. Recent developments of sound power determination for machines using sound intensity
measurements. A survey of procedure and accuracy aspects. Inter-noise 85 (Munich), 1985, pp.57-68
[19] HBNER, G. Recent developments of requirements for an intensity measurement code determining sound
power levels of machines.2e Congrs international sur lintensimtrie acoustique, Senlis, France, September
1985, pp.307-318

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Z 8736-1:1999 (ISO 9614-1:1993)
[20] HBNER, G. Sound intensity method. Errors in determining the sound power levels of machines and its
correlation with sound field indicators. Inter-noise 87 (Beijing, China), 1987, pp.1227-1230
[21] HBNER, G. Sound power determination of machines using sound intensity measurements. Reduction of
number of measurement positions in cases of “hot areas”. Inter-noise 88 (Avignon), 1988, pp.1113-1116
[22] HBNER, G. and RIEGER, W. Schallintensitts-messverfahren zur Schalleistungsbestimmung in der Praxis.
Forschungsbericht der Bundesanstalt fr Arbeitsschutz, Fb Nr.550, ISBN 3-88314-809.1. Wirtschaftsverlag NW,
Verlag fr die Neue Wissenschft GmbH, Bremerhafen, Germany
[23] LAMBERT, J. M. The application of a modern intensity meter to industrial problems : example of in situ sound
power determination. Inter-noise 79 (Warszawa), 1979, pp.227-231
[24] PASCAL, J. C. Unbiased sound power determination. Proceedings of the Institute of Acoustics Autumn
Conference (Bournemouth), 1982, pp. B2.1-B2.4
[25] POPE, J. Intensity measurements for sound power determination over a reflecting plane. Inter-noise 86 (Boston),
1986, pp.1115-1120
[26] RASMUSSEN, P. Sound power measurements by different operators. Inter-noise 86 (Boston), 1986,
pp.1121-1124
規格原案作成委員会 構成表
氏名 所属
(主査) 子 安 勝 千葉工業大学
○ 今 井 章 久 武蔵工業大学
今 泉 八 郎 株式会社小野測器
○ 押 野 康 夫 財団法人日本自動車研究所
君 塚 郁 夫 日本アイ・ビー・エム株式会社
○ 鈴 木 英 男 オンテックR&D株式会社
○ 瀧 浪 弘 章 リオン株式会社
○ 橘 秀 樹 東京大学
田 中 俊 光 株式会社神戸製鋼所
○ 東 山 三樹夫 工学院大学
三 浦 甫 静岡理工科大学
○ 矢 野 博 夫 千葉工業大学
○ 山 田 英 美 松下インターテクノ株式会社
矢 野 友三郎 工業技術院材料規格課
橋 本 繁 晴 財団法人日本規格協会
(事務局) 後 藤 健 次 社団法人日本音響学会

JIS Z 8736-1:1999の引用国際規格 ISO 一覧

  • ISO 9614-1:1993(IDT)

JIS Z 8736-1:1999の国際規格 ICS 分類一覧

JIS Z 8736-1:1999の関連規格と引用規格一覧

規格番号
規格名称
JISC1515:2020
電気音響―音響校正器