ANSI ASA S12.76-2017 AMERICAN NATIONAL STANDARD Methods for Measurement of Supersonic Jet Noise from Uninstalled Military Aircraft Engines.pdf
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1、 ANSI/ASA S12.76-2017 AMERICAN NATIONAL STANDARD Methods for Measurement of Supersonic Jet Noise from Uninstalled Military Aircraft Engines Accredited Standards Committee S12, Noise Standards Secretariat Acoustical Society of America 1305 Walt Whitman Road, Suite 300 Melville, NY 11747 ANSI/ASAS12.7
2、6-2017 The American National Standards Institute, Inc. (ANSI) is the national coordinator 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 engin
3、eers formed in 1929 to increase and diffuse the knowledge of acoustics and to promote its practical applications. ANSI/ASA S12.76-2017 AMERICAN NATIONAL STANDARD Methods for Measurement of Supersonic Jet Noise from Uninstalled Military Aircraft Engines Secretariat: Acoustical Society of America Appr
4、oved on March 27, 2017, by: American National Standards Institute, Inc. Abstract This standard describes procedures to measure jet noise from uninstalled military aircraft engines with supersonic exhaust flows. The methods pertain to propulsion systems mounted on outdoor test stands with appropriate
5、 inlets and representative nozzles. Detailed measurement procedures are described for near-field acoustical characterization. These data can be used to establish baseline noise levels, assess effectiveness of noise reduction technologies, estimate personnel noise exposure, and provide full-scale dat
6、a for refinement of engine noise models. Far-field measurement procedures are described to provide data for estimates of community noise. This standard describes required measurement instrumentation, signal processing, data formatting, and measurement uncertainty. This standard does not apply to com
7、mercial engines, dual-use engines, or other engines covered by FAA/ICAO noise certification requirements. AMERICAN NATIONAL STANDARDS ON ACOUSTICS The Acoustical Society of America (ASA) provides the Secretariat for Accredited Standards Committees S1 on Acoustics, S2 on Mechanical Vibration and Shoc
8、k, 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, organizations with a general interest, and government representatives). The standards are published by the Ac
9、oustical Society of America as American National Standards after approval by their respective Standards Committees and the American National Standards Institute (ANSI). These standards are developed and published as a public service to provide standards useful to the public, industry, and consumers,
10、 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, and maintaining or revising its own Standards. The ASA Standards Secretariat administers Committee organiz
11、ation 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 approved as American National Standards by ANSI, the ASA Standards Secretariat arranges for their publication a
12、nd 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 of Standards Review, substantial agreement has been reached by directly and materially affected interest
13、s. 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 towards their resolution. The use of an American National Standard is completely voluntary. Their existen
14、ce 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 conforming to the Standards. NOTICE: This American National Standard may be revised or withdrawn at any time. Th
15、e procedures of the American National Standards Institute require that action be taken periodically to reaffirm, revise, or withdraw this Standard. Acoustical Society of America Standards Secretariat 1305 Walt Whitman Road, Suite 300 Melville, New York 11747 Telephone: 1 (631) 390-0215 Fax: 1 (631)
16、923-2875 E-mail: asastdsacousticalsociety.org 2017 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 not falling within the provisions of the U.S. Copyright Act of 1976, without prior w
17、ritten permission of the publisher. For permission, address a request to the Standards Secretariat of the Acoustical Society of America. 2017 Acoustical Society of AmericaAll rights reserved iContents 1 Scope . 1 2 Normative references . 1 3 Terms and definitions . 2 4 Noise data acquisition system
18、requirements . 4 4.1 Microphones and preamplifiers 4 4.2 Digital recording system . 5 5 Measurement site 6 5.1 Terrain 6 5.2 Ground impedance optional far-field measurements only . 6 5.3 Weather requirements 7 6 Measurement methods 7 6.1 General procedures 7 6.2 Engine performance measurement method
19、s . 8 6.3 Near-field method . 8 6.4 Optional far-field method using elevated microphones 10 7 Data analysis . 12 7.1 Weather analysis 12 7.2 Spectral analysis . 12 7.3 Uncorrected pressure-time histories pressure vs. time . 13 7.4 Corrected one-third octave-band spectra . 13 7.5 Overall levels 13 7.
20、6 Engine performance histories . 13 8 Reporting and test documentation . 13 8.1 Calibration records 13 8.2 Weather data 13 8.3 Test log / scribe notes 14 8.4 Instrumentation setup log . 14 8.5 Test location data . 14 8.6 Ground impedance data optional far-field measurements only . 14 8.7 Engine perf
21、ormance data . 14 8.8 Raw noise measurement data 14 8.9 Reduced noise data 14 8.10 Uncertainty 16 Annex A (normative) Measurement uncertainty for near-field noise measurements 17 A.1 Measurement uncertainty . 17 Annex B (informative) Microphone cable length considerations . 20 Annex C (normative) Ob
22、structions and reflections 22 C.1 Obstructions 22 C.2 Field reflections check 22 Bibliography 23 2017 Acoustical Society of AmericaAll rights reserved iiFigures Figure 1 Uninstalled engine ne ar-field microphone locations 9 Figure 2 Uninstalled engine far-field microphone locations . 11 Figure 3 Exa
23、mple of an ASCII header mirroring the contents of the database description document 15 Figure B.1 Maximum frequency as a function of cable length for constant current supply levels of 2, 4, 10, and 20 mA for coaxial cable type and maximum output sensor voltages of: a) RG-58 and 1 V, b) RG-58 and 10
24、V, c) RG-59 and 1 V, d) RG-59 and 10 V 21 Tables Table A.1 Uncertainty budget for method A elevated engine nea r-field noise measurement methods . 18 Table A.2 Uncertainty budget for the optional method C far-field noise measurement methods 19 2017 Acoustical Society of AmericaAll rights reserved ii
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