ASA S12 57-2011 AMERICAN NATIONAL STANDARD Acoustics C Determination of sound power levels and sound energy levels of noise sources using sound pressure C Engineering survey method .pdf
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1、 ANSI/ASA S12.57-2011 / ISO 3747:2010 (a revision of ANSI S12.57-2002 / ISO 3747:2000) AMERICAN NATIONAL STANDARD Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering/survey methods for use in situ in a reverberant environment (a Nat
2、ionally Adopted International Standard) Accredited Standards Committee S12, Noise Standards Secretariat Acoustical Society of America 35 Pinelawn Road, Suite 114 E Melville, NY 11747-3177ANSI/ASAS12.57-2011/ ISO 3747:2010The American National Standards Institute, Inc. (ANSI) is the national coordina
3、tor of voluntary standards development and the clearinghouse in the U.S.A. for information on national and international standards. The Acoustical Society of America (ASA) is an organization of scientists and engineers formed in 1929 to increase and diffuse the knowledge of acoustics and to promote
4、its practical applications. ANSI/ASA S12.57-2011 / ISO 3747:2010 AMERICAN NATIONAL STANDARD Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering/survey methods for use in situ in a reverberant environment (a nationally adopted intern
5、ational standard) Secretariat: Acoustical Society of America Approved on August 26, 2011 by: American National Standards Institute, Inc. Abstract This American National Standard specifies a method for determining the sound power level or sound energy level of a noise source by comparing measured sou
6、nd pressure levels emitted by a noise source (machinery or equipment) mounted in situ in a reverberant environment, with those from a calibrated reference sound source. The sound power level (or, in the case of noise bursts or transient noise emission, the sound energy level) produced by the noise s
7、ource, in frequency bands of width one octave, is calculated using those measurements. The sound power level or sound energy level with frequency A-weighting applied is calculated using the octave-band levels. AMERICAN NATIONAL STANDARDS ON ACOUSTICS The Acoustical Society of America (ASA) provides
8、the Secretariat for Accredited Standards Committees S1 on Acoustics, S2 on Mechanical Vibration and Shock, S3 on Bioacoustics, S3/SC 1 on Animal Bioacoustics, and S12 on Noise. These committees have wide representation from the technical community (manufacturers, consumers, trade associations, organ
9、izations with a general interest, and government representatives). The standards are published by the Acoustical Society of America as American National Standards after approval by their respective Standards Committees and the American National Standards Institute (ANSI). These standards are develop
10、ed and published as a public service to provide standards useful to the public, industry, and consumers, and to Federal, State, and local governments. Each of the Accredited Standards Committees (operating in accordance with procedures approved by ANSI) is responsible for developing, voting upon, an
11、d maintaining or revising its own Standards. The ASA Standards Secretariat administers Committee organization and activity and provides liaison between the Accredited Standards Committees and ANSI. After the Standards have been produced and adopted by the Accredited Standards Committees, and approve
12、d as American National Standards by ANSI, the ASA Standards Secretariat arranges for their publication and distribution. An American National Standard implies a consensus of those substantially concerned with its scope and provisions. Consensus is established when, in the judgment of the ANSI Board
13、of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necessarily unanimity. Consensus requires that all views and objections be considered and that a concerted effort be made t
14、owards their resolution. The use of an American National Standard is completely voluntary. Their existence does not in any respect preclude anyone, whether he or she has approved the Standards or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conformi
15、ng to the Standards. NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken periodically to reaffirm, revise, or withdraw this Standard. Acoustical Society of America ASA Secretariat 35
16、 Pinelawn Road, Suite 114E Melville, New York 11747-3177 Telephone: 1 (631) 390-0215 Fax: 1 (631) 390-0217 E-mail: asastdsaip.org 2011 by Acoustical Society of America. This standard may not be reproduced in whole or in part in any form for sale, promotion, or any commercial purpose, or any purpose
17、not falling within the provisions of the U.S. Copyright Act of 1976, without prior written permission of the publisher. For permission, address a request to the Standards Secretariat of the Acoustical Society of America. 2011 Acoustical Society of AmericaAll rights reserved. i Contents 1 Scope . 1 1
18、.1 General . 1 1.2 Types of noise and noise sources 1 1.3 Test environment 1 1.4 Measurement uncertainty . 1 2 Normative references . 2 3 Terms and definitions . 2 4 Test environment . 6 4.1 Criterion for acoustic adequacy of test environment 6 4.2 Criterion for background noise . 6 5 Instrumentatio
19、n and measurement equipment 7 5.1 General . 7 5.2 Calibration . 7 6 Location, installation and operation of noise source under test. 7 6.1 Source location and installation 7 6.2 Auxiliary equipment 8 6.3 Operation of source during test 8 7 Measurement procedure 8 7.1 General . 8 7.2 Characterization
20、 of noise source under test . 9 7.3 Locations of the reference sound source . 9 7.4 Microphone positions 10 7.5 Measurement of sound pressure levels for a noise source which emits steady or non-steady noise . 11 7.6 Measurement of sound pressure levels for a noise source which emits impulsive noise
21、12 8 Calculation of sound power levels and sound energy levels . 12 8.1 Corrections for background noise . 12 8.2 Mean time-averaged sound pressure levels for a noise source which emits steady or non-steady noise 13 8.3 Sound power levels 14 8.4 Mean single event sound pressure level for a noise sou
22、rce which emits impulsive noise . 14 8.5 Sound energy levels . 16 8.6 A-weighted sound power level and A-weighted sound energy level 16 9 Measurement uncertainty 16 9.1 Methodology . 16 9.2 Determination of omc. 17 9.3 Determination of R018 9.4 Typical upper bound values of R019 9.5 Total standard d
23、eviation, tot, and expanded uncertainty, U . 20 10 Information to be recorded . 20 10.1 General . 20 ii 2011 Acoustical Society of AmericaAll rights reserved. 10.2 Noise source under test 20 10.3 Test environment 20 10.4 Instrumentation . 21 10.5 Acoustic data 21 11 Test report 22 Annex A (normative
24、) Evaluation of the excess of sound pressure level at a given distance . 23 Annex B (informative) Recommendations for the location of the reference sound source and the microphones, if only one position is used for the reference sound source . 24 B.1 General . 24 B.2 Recommendation 1. 24 B.3 Recomme
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