DIN ISO 15665-2011 Acoustics - Acoustic insulation for pipes valves and flanges (ISO 15665 2003 + Cor 1 2004)《声学 管道 阀门和法兰的隔音(ISO 15665-2003 + Cor 1-2004)》.pdf
《DIN ISO 15665-2011 Acoustics - Acoustic insulation for pipes valves and flanges (ISO 15665 2003 + Cor 1 2004)《声学 管道 阀门和法兰的隔音(ISO 15665-2003 + Cor 1-2004)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 15665-2011 Acoustics - Acoustic insulation for pipes valves and flanges (ISO 15665 2003 + Cor 1 2004)《声学 管道 阀门和法兰的隔音(ISO 15665-2003 + Cor 1-2004)》.pdf(39页珍藏版)》请在麦多课文档分享上搜索。
1、February 2011 Translation by DIN-Sprachendienst.English price group 16No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).I
2、CS 17.140.20; 91.120.20!$mHL“1743741www.din.deDDIN ISO 15665Acoustics Acoustic insulation for pipes,valves and flanges (ISO 15665:2003 +Cor. 1:2004)English translation of DIN ISO 15665:2011-02Akustik Schalldmmung von Rohren, Ventilen und Flanschen (ISO 15665:2003 + Cor. 1:2004)Englische bersetzung v
3、on DIN ISO 15665:2011-02Acoustique Isolation acoustique des tuyaux, clapets et brides (ISO 15665:2003 + Cor. 1:2004)Traduction anglaise de DIN ISO 15665:2011-02www.beuth.deDocument comprises pagesIn case of doubt, the German-language original shall be considered authoritative.3902.11 A comma is used
4、 as the decimal marker. Contents Page National foreword .3 National Annex NA (informative) Bibliography.5 1 Scope 4 2 Normative references 4 3 Terms and definitions4 4 Classes of acoustic insulation .5 5 Guide to the reduction of noise from pipes 9 5.1 Required insertion loss: Design phase steps.9 5
5、.2 Required insertion loss: Operating plants 10 5.3 Length of acoustic insulation.11 5.4 Implications for piping design12 5.5 Derivation of overall noise reduction 13 5.6 Typical noise reduction values.15 6 Construction of typical acoustic insulation systems.16 6.1 General16 6.2 Cladding16 6.3 Porou
6、s layer .17 6.4 Support of the cladding.18 7 Installation 18 7.1 General18 7.2 Extent of insulation18 7.3 End caps .18 7.4 Acoustic enclosures19 7.5 Prevention of mechanical damage.19 8 Combined thermal and acoustic insulation 19 8.1 General19 8.2 Hot services19 8.3 Cold services19 9 Acoustic insula
7、tion constructions that meet the insulation class requirements20 9.1 General20 9.2 Materials .21 9.3 Vibration isolation material at pipe supports21 10 Testing of acoustic insulation systems.21 10.1 General21 10.2 Measurement method: Reverberation room .22 10.3 Test facility .22 10.4 Test specimen24
8、 10.5 Measurements24 10.6 Results 25 10.7 Information to be reported25 Annex A (informative) Equations for the calculation of the minimum required insertion loss DW,min of the insulation classes27 Annex B (informative) General construction of acoustic insulation28 Annex C (informative) Examples of t
9、ypical construction details29 Bibliography 39 2 DIN ISO 15665:2011-02 National foreword This standard has been prepared by Technical Committee ISO/TC 43 “Acoustics” (Secretariat: DS, Denmark). The responsible German body involved in its preparation was the Normenausschuss Akustik, Lrmminderung und S
10、chwingungstechnik im DIN und VDI (Acoustics, Noise Control and Vibration Engineering Standards Committee in DIN and VDI), Working Committee NA 001-02-03 AA Schallausbreitung und Lrmminderung in Gebuden, in Arbeitssttten und im Freien. After careful consideration, the German mirror committee has deci
11、ded to publish this International Standard as a German Standard. The national standard implementing the International Standard includes not only ISO 15665:2003 but also ISO 15665:2003 Technical Corrigendum 1, published in 2004-03. National footnotes The DIN Standards corresponding to the Internation
12、al Standards referred to in this document are as follows: ISO 354 DIN EN ISO 354 ISO 3741 DIN EN ISO 3741 ISO 3744 DIN EN ISO 3744 National Annex NA (informative) Bibliography DIN EN ISO 354, Acoustics Measurement of sound absorption in a reverberation room DIN EN ISO 3741, Acoustics Determination o
13、f sound power levels of noise sources using sound pressure Precision methods for reverberation rooms DIN EN ISO 3744, Acoustics Determination of sound power levels of noise sources using sound pressure Engineering method in an essentially free field over a reflecting plane 3 DIN ISO 15665:2011-02 po
14、int out the remaining errors which, from Germanys point of view, still need to be corrected. Acoustics Acoustic insulation for pipes, valves and flanges 1 Scope This International Standard defines the acoustic performance of three classes (Classes A, B and C) of pipe insulation. It also specifies th
15、ree types of construction that will meet these acoustic performance classes. Furthermore, this International Standard defines a standardized test method for measuring the acoustic performance of any type of construction, thereby allowing existing and new insulation constructions to be rated against
16、the three classes. This International Standard is applicable to the acoustic insulation of cylindrical steel pipes and to their piping components. It is valid for pipes up to 1 m in diameter and a minimum wall thickness of 4,2 mm for diameters below 300 mm, and 6,3 mm for diameters from 300 mm and a
17、bove. It is not applicable to the acoustic insulation of rectangular ducting and vessels or machinery. This International Standard covers both design and installation aspects of acoustic insulation and provides guidance to assist noise control engineers in determining the required class and extent o
18、f insulation needed for a particular application. It gives typical examples of construction methods, but the examples are for information only and not meant to be prescriptive. This International Standard emphasises the aspects of acoustic insulation that are different from those of thermal insulati
19、on, serving to guide both the installer and the noise control engineer. Details of thermal insulation are beyond the scope of this International Standard. 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the
20、edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO 354, Acoustics Measurement of sound absorption in a reverberation room ISO 3741:1999, Acoustics Determination of sound power levels of noise sources using sound pressu
21、re Precision methods for reverberation rooms ISO 3744, Acoustics Determination of sound power levels of noise sources using sound pressure Engineering method in an essentially free field over a reflecting plane 3 Terms and definitions For the purposes of this document, the following terms and defini
22、tions apply. 3.1 piping cylindrical pipes and fittings such as valves, flanges, bellows and supports 4 DIN ISO 15665:2011-02 3.2 acoustic insulation acoustic lagging outer cover applied with the aim of reducing the noise radiated from the pipe NOTE Acoustic insulation typically consists of a sound-a
23、bsorbing and/or resilient material (“porous layer”) on the piping and an impermeable outer cover (“cladding”). 3.3 airflow resistivity pressure drop per unit thickness of a porous material encountered by a steady air flow of unit velocity through the material NOTE 1 Airflow resistivity equals the pr
24、essure drop divided by the product of the air velocity and the thickness of the sample. NOTE 2 The unit of airflow resistivity is Ns/m4= Pas/m2. NOTE 3 Procedures for determining the flow resistivity are described in ISO 9053. 3.4 insertion loss sound power insulation DWfor any octave or one-third-o
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