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EN ISO 9614-3:2009

Current
Current

The latest, up-to-date edition.

Acoustics - Determination of sound power levels of noise sources using sound intensity - Part 3: Precision method for measurement by scanning (ISO 9614-3:2002)
Published date

08-05-2009

Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 General requirements
5 Acoustic environment
6 Instrumentation
7 Installation and operation of the source
8 Measurement of normal sound intensity component levels
9 Determination of sound power level
10 Information to be recorded
Annex A (informative) - List of symbols used in this part
        of ISO 9614
Annex B (normative) - Calculation of field indicators
Annex C (normative) - Procedure for achieving the desired
        accuracy
Annex D (informative) - Effects of airflow on measurement
        of sound intensity
Annex E (informative) - Effect of sound absorption within
        the measurement surface
Annex F (informative) - Measurement surface and scanning
        procedure
Annex G (informative) - Procedure for obtaining time-averaged
        intensities and squared pressures from a sequence of
        short-time averaged intensities and squared pressures
Annex H (informative) - Normalization of sound power level
Annex I (informative) - Field indicators used in
        ISO 9614-1, -2 and -3
Bibliography
Annex ZA (informative) - Relationship between this European
         Standard and the Essential Requirements of EU
         Directive 98/37/EC
Annex ZB (informative) - Relationship between this European
         Standard and the Essential Requirements of EU
         Directive 2006/42/EC

ISO 9614-3:2002 specifies a method for measuring the component of sound intensity normal to a measurement surface which is chosen so as to enclose the sound source(s) of which the sound power level is to be determined. Surface integration of the intensity component normal to the measurement surface is approximated by subdividing the measurement surface into contiguous partial surfaces, and scanning the intensity probe over each partial surface along a continuous path which covers the extent of the partial surface. The measurement instrument determines the averaged normal intensity component and averaged squared sound pressure over the duration of each scan. The scanning operation can be performed either manually or by means of a mechanical system. The octave band or band-limited weighted sound power level is calculated from the measured one-third-octave- band values. The method is applicable to any source for which a physically stationary measurement surface can be defined, and on which the sound generated by the source under test and by other significant extraneous sources are stationary in time. The source is defined by the choice of measurement surface. The method is applicable in specific test environments fulfilling all relevant requirements of ISO 9614-3. ISO 9614-3 specifies certain ancillary procedures, described in annex C, to be followed in conjunction with the sound power determination. The results are used to indicate the quality of the determination, and hence the grade of accuracy. If the quality of the determination does not meet the requirements of ISO 9614-3, the test procedure shall be modified in the manner indicated.ISO 9614-3 is not applicable to any frequency band in which the sound power of the source is found to be negative on measurement. It is applicable to sources situated in any environment which is neither so variable over time as to reduce the accuracy of the measurement of sound intensity to an unacceptable degree, nor subjects the intensity measurement probe to gas flows of unacceptable speed or unsteadiness.In some cases it will be found that the test conditions are too adverse to allow the requirements of ISO 9614-3 to be met. For example, extraneous noise levels can exceed the dynamic capability of the measuring instrument or can vary to an excessive degree during the test. In such cases the method given in ISO 9614-3 is not suitable for the determination of the sound power level of the source.

Committee
CEN/TC 211
DocumentType
Standard
PublisherName
Comite Europeen de Normalisation
Status
Current

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I.S. EN 12547:2014 CENTRIFUGES - COMMON SAFETY REQUIREMENTS
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UNE-EN 16583:2016 Heat exchangers - Hydronic room fan coils units - Determination of the sound power level
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UNI EN 13113 : 2010 TANNERY MACHINES - ROLLER COATING MACHINES - SAFETY REQUIREMENTS
UNI EN 12547 : 2014 CENTRIFUGES - COMMON SAFETY REQUIREMENTS
UNI EN 13112 : 2010 TANNERY MACHINES - SPLITTING AND BANDKNIFE SHEARING MACHINES - SAFETY REQUIREMENTS
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BS EN 13141-11:2015 Ventilation for buildings. Performance testing of components/products for residential ventilation Supply ventilation units
BS EN 16583:2015 Heat exchangers. Hydronic room fan coils units. Determination of the sound power level
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UNE-EN 13053:2007 Ventilation for buildings - Air handling units - Rating and performance for units, components and sections
BS EN 12547:2014 Centrifuges. Common safety requirements
BS EN 15036-1:2006 Heating boilers. Test regulations for airborne noise emissions from heat generators Airborne noise emissions from heat generators
BS EN 13112 : 2002 TANNERY MACHINES - SPLITTING AND BANDKNIFE SHEARING MACHINES - SAFETY REQUIREMENTS
BS EN 62109-1:2010 Safety of power converters for use in photovoltaic power systems General requirements
UNI EN 13053 : 2011 VENTILATION FOR BUILDINGS - AIR HANDLING UNITS - RATING AND PERFORMANCE FOR UNITS, COMPONENTS AND SECTIONS
UNE-EN 13114:2002 Tannery machines- Rotating process vessels - Safety requirements.
UNE-EN 13112:2002 Tannery machines - Splitting and bandknife shearing machines - Safety requirements.
BS EN 13114 : 2002 TANNERY MACHINES - ROTATING PROCESS VESSELS - SAFETY REQUIREMENTS
BS EN 13113 : 2002 TANNERY MACHINES - ROLLER COATING MACHINES - SAFETY REQUIREMENTS
UNE-EN 13113:2002 Tannery machines - Roller coating machines - Safety requirements.
EN 16583:2015 Heat exchangers - Hydronic room fan coils units - Determination of the sound power level
EN 15036-1:2006 Heating boilers - Test regulations for airborne noise emissions from heat generators - Part 1: Airborne noise emissions from heat generators
I.S. EN 13141-11:2015 VENTILATION FOR BUILDINGS - PERFORMANCE TESTING OF COMPONENTS/PRODUCTS FOR RESIDENTIAL VENTILATION - PART 11: SUPPLY VENTILATION UNITS
EN 13053:2006+A1:2011 Ventilation for buildings - Air handling units - Rating and performance for units, components and sections
DIN EN 12102:2013-10 AIR CONDITIONERS, LIQUID CHILLING PACKAGES, HEAT PUMPS AND DEHUMIDIFIERS WITH ELECTRICALLY DRIVEN COMPRESSORS FOR SPACE HEATING AND COOLING - MEASUREMENT OF AIRBORNE NOISE - DETERMINATION OF THE SOUND POWER LEVEL
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ISO 5725-1:1994 Accuracy (trueness and precision) of measurement methods and results — Part 1: General principles and definitions
ISO 12001:1996 Acoustics Noise emitted by machinery and equipment Rules for the drafting and presentation of a noise test code
ISO 3744:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering methods for an essentially free field over a reflecting plane
ISO 3743-2:1994 Acoustics Determination of sound power levels of noise sources using sound pressure Engineering methods for small, movable sources in reverberant fields Part 2: Methods for special reverberation test rooms
ISO 7574-4:1985 Acoustics — Statistical methods for determining and verifying stated noise emission values of machinery and equipment — Part 4: Methods for stated values for batches of machines
ISO 9614-1:1993 Acoustics — Determination of sound power levels of noise sources using sound intensity — Part 1: Measurement at discrete points
IEC 60942:2003 Electroacoustics - Sound calibrators
IEC 61043:1993 Electroacoustics - Instruments for the measurement of sound intensity - Measurements with pairs of pressure sensing microphones
ISO 3747:2010 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
ISO 3740:2000 Acoustics Determination of sound power levels of noise sources Guidelines for the use of basic standards
ISO 9614-2:1996 Acoustics — Determination of sound power levels of noise sources using sound intensity — Part 2: Measurement by scanning
ISO 7574-1:1985 Acoustics — Statistical methods for determining and verifying stated noise emission values of machinery and equipment — Part 1: General considerations and definitions
ISO 3746:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Survey method using an enveloping measurement surface over a reflecting plane
ISO/TR 7849:1987 Acoustics Estimation of airborne noise emitted by machinery using vibration measurement
ISO 3741:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Precision methods for reverberation test rooms
ISO 3745:2012 Acoustics — Determination of sound power levels and sound energy levels of noise sources using sound pressure — Precision methods for anechoic rooms and hemi-anechoic rooms
1998/37/EC : 1998 DIRECTIVE 98/37/EC OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL OF 22 JUNE 1998 ON THE APPROXIMATION OF THE LAWS OF THE MEMBER STATES RELATING TO MACHINERY
IEC 61260:1995 Electroacoustics - Octave-band and fractional-octave-band filters
IEC 60651:1979+AMD1:1993+AMD2:2000 CSV Sound level meters
ISO/IEC Guide 98-3:2008 Uncertainty of measurement — Part 3: Guide to the expression of uncertainty in measurement (GUM:1995)
ISO 3743-1:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering methods for small movable sources in reverberant fields Part 1: Comparison method for a hard-walled test room

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