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a-weighted surface sound pressure level sound pressure levels sound pressure level a-weighted sound pressure level measurement surface earthquake observation instrument scopethis standard marine microbenthic organisms thin wall drill
GB/T 3768-1996 in English

GB/T 3768-1996 in English

SUPERSEDED

Acoustics--Determination of sound power levels of noise sources using sound pressure--Survey method using an enveloping measurement surface over a reflecting plane

  • Issued on:1996-05-27
  • Implemented on:1996-12-01
  • File Format:PDF
  • Delivery:Via email within 5 business days
Price(USD): $360.00
$350.00
Standard No: GB/T 3768-1996
Document status: SUPERSEDED
Superseded by: GB/T 3768-2017 Acoustics―Determination of sound power levels and sound energy levels ofnoise sources using sound pressure―Survey method using an envelopingmeasurement surface over a reflecting plane
Superseded on: 2018-04-01
Title in English: Acoustics--Determination of sound power levels of noise sources using sound pressure--Survey method using an enveloping measurement surface over a reflecting plane
Title in Chinese: 声学 声压法测定噪声源声功率级 反射面上方采用包络测量表面的简易法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 5 business days
Issued on: 1996-05-27
Implemented on: 1996-12-01
Superseding: GB 3768-1983 Determination of sound power levels of noise sources--Survey method
ICS Classification: 17.140.01-Acoustics measurements and noise abatement in general
Chinese Classification: A59-Acoustic Measurement
Professional Classification: GB-National Standard
Related Keywords: a-weighted surface sound pressure level
sound pressure levels
sound pressure level
a-weighted sound pressure level
measurement surface
Related Topics: GB/T 3768
GB/T 3768-1996
gbt 3768 1996
GB/T+3768-1996
GB/t+3768
acoustic standard
acoustic standard
Acoustic+ Standard
GB/T 3768-2017
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GB 3768-1996
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gb t3768
Surface reflectance measurement
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gb+3768-1996
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GB/T3768-2017
gb/t3768-1996
gb+t+3768
GB 3768
gb/t3768-2017
gb+t3768
gb+3768
noise source
Sound source
test sound source
test sound source
Reflective surface
Sound pressure
Reflective surface
Sound Power Measurement Based on Sound Pressure Method
sound power
Noise source sound power
Measuring table
sound power level
GBT3768
GBT3768-1996
GB/T 3768-2017
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《GB/T 3768-1996声学 声压法测定噪声源声功率级 反射面上方采用包络测量表面的简易法》由TC17(全国声学标准化技术委员会)归口,主管部门为中国科学院。
本标准规定了在包络声源的测量表面上测量声压级以计算噪声源声功率级的方法。同时,给出了测试环境、测量仪器的要求以及表面声压级及声功率级的计算方法。声功率级的测定结果准确度等级为3级。对于各种类型的设备,根据本标准制定和使用其专用噪声测试规范是非常重要的。噪声测试规范中应对被测声源的安装、负载、工作条件、测量表面和传声器阵列的选择给出详细的说明。本标准规定的方法适用于测量各种类型的噪声。本标准适用于各种类型和尺寸的声源(设备、机器、部件组件等)。本标准不适用于超高或超长的声源(烟囱、管道、输送机械、多声源工业设备等)。本标准适用于满足要求具有一个或多个反射面的室内或室外测试环境。


1.1 General
This Standard specifies a method for measuring the sound pressure levels on a measurement surface enveloping the source in order to calculate the sound power level produced by the noise source. It gives requirements for the test environment and instrumentation as well as techniques for obtaining the surface sound pressure level from which the sound power level of the source is calculated, leading to results which have grade 3 accuracy.
It is important that specific noise test codes for various types of equipment be established and used in accordance with this International Standard. For each type of equipment, such noise test codes will give detailed requirements on mounting, loading and operating conditions for the equipment under test as well as a selection of the measurement surface and the microphone array as specified in this standard.
Note 1: The noise test code for a particular type of equipment should give detailed information on the particular surface that is selected, as the use of differently shaped measurement surfaces may yield differing estimates of the sound power level of a source.
1.2 Types of noise and noise sources
The methods specified in this Standard are suitable for all types of noise.
Note 2: noise classification (steady, non-steady, fluctuating, etc.), is detailed ion GB/T 14259.
This Standard is applicable to all types and sizes of noise source (e.g. installation, machine and component).
This Standard is not applicable to very tall or very long sources such as chimneys, ducts, conveyors and multi-source industrial installation.
1.3 Test environment
The test environments that are applicable for measurements made in accordance with this Standard may be located indoors or outdoors, with one or more sound-reflecting planes.
1.4 Measurement uncertainty
For sources which radiate steady broad-band noise, determinations made in accordance with this standard result, with few exceptions, in standard deviations of reproducibility of the A-weighted sound power level equal to or less than 3 dB (K2A<5dB) or 4dB (5dB≤K2A≤7dB). For discrete-tone sources, the standard deviation of reproducibility is normally 1 dB larger (see Table 1).
A single value of the sound power level of a noise source determined in accordance with the procedures given in this International Standard is likely to differ from the true value by an amount within the range of the measurement uncertainty. The uncertainty in determinations of the sound power level arises from several factors which affect the results, some associated with environmental conditions at the test site and others with experimental techniques.
If a particular noise source were to be transported to each of a number of different test sites, and if, at each test site, the sound power level of that source were to be determined in accordance with this standard, the results would show a scatter. The standard deviation of the measured levels could be calculated (see examples in GB/T 14573.). With few exceptions, these standard deviations would not exceed those listed in table 1. The values standard deviations of reproducibility σR are given in table 1. The values of table 1 take into account the cumulative effects of measurement uncertainty in applying the procedures of this standard, but exclude variations in the sound power output caused by changes in operating conditions (e.g. rotational speed, power and voltage) or mounting conditions.
The measurement uncertainty depends on the standard deviation of reproducibility tabulated in table 1 and on the degree of confidence that is desired. As examples, for a normal distribution of sound power levels, there is a 90 % confidence that the expected value of the sound power level of a source lies within the range ±1.6560σR of the measured value and a 95% confidence that it lies within the range ±1.960σR of the measured value. For further examples, reference should be made to GB/T 1457 and ISO 9296.
Table 1: Upper values of the standard deviations of reproducibility of A-weighted sound power levels
Application Highest standard deviation of reproducibility, σR
dB
For a source which emits noise with a relatively "flat" spectrum over the frequency range of interest 3
For a source which emits noise that contains predominant discrete tones 4

Notes:
3 If K2A is larger than or equal to 5 dB, σR may be 1 dB larger than the values given in Table 1.
4 A noise test code for a particular type of sound sources may have lower values of the standard deviation of reproducibility.
5 The standard deviations listed in table1 are associated with the test conditions and procedures defined in this International Standard and not with the noise source itself. They arise in part from variations between test sites, changes in atmospheric conditions if outdoors, the geometry of the test room or outdoor environment, the acoustical properties of the reflecting plane, absorption at the test room boundaries if indoors, background noise, and the type and calibration of instrumentation. They are also due to variations in experimental techniques, including the size and shape of the measurement surface, number and location of microphone positions, sound source location, integration times, and determination of environmental corrections, if any. The standard deviations are also affected by errors associated with measurements taken in the near field of the source; such errors depend upon the nature of the sound source, but generally increase for smaller measurement distances and lower frequencies (below 250 Hz).
6 If measurements are made at several test sites, the results of sound power determinations on a given source may be in better agreement than would be implied by the standard deviations of table 1.
7 For a particular family of sound sources, a similar size with similar sound power spectra and similar operating conditions, the standard deviations of reproducibility may be smaller than the values given in table I. A noise test code for a particular type of machinery or equipment making reference to this standard may state standard deviations smaller than those listed in Table 1, if substantiation is available from the result of suitable laboratory tests.
8 The standard deviations of reproducibility, as tabulated in table 1, include the uncertainty associated with repeated measurements on the same noise under the same conditions (standard deviation of repeatability). This uncertainty is usually much smaller than the uncertainty associated with variability from one test site to another. However, if it is difficult to maintain stable operating or mounting conditions for a particular source, the standard deviation of repeatability may not be small compared with the values given in table 1. In such cases, the fact that it was difficult to obtain repeatable sound power level data on the source should be recorded and stated in the test report.
9 The procedures of this standard and the standard deviations given in table 1 are applicable to measurements on an individual machine. Characterization of the sound power levels of batches of machines of the same family or type involves the use of random sampling techniques in which confidence intervals are specified, and the results are expressed in terms of statistical upper limits. In applying these techniques, the total standard deviation must be known or estimated, including the standard deviation of production, as defined in GB/T 14573, which is a measure of the variation in sound power output between individual machines within the batch. Statistical methods for the characterization of batches of machines are described in GB/T 14573.

1 Scope
1.1 General
1.2 Types of noise and noise sources
1.3 Test environment
1.4 Measurement uncertainty
2 Normative References
3 Definitions
4 Acoustic Environment
4.1 General
4.2 Criterion for acoustic adequacy of test environment
4.3 Criterion for background noise
5 Instrumentation
5.1 General
5.2 Calibration
5.3 Microphone windscreen
6 Installation and operation conditions of noise source under test
6.1 General
6.2 Noise source location
6.3 Noise source installation and mounting
6.4 Auxiliary equipment
6.5 Operation of source during test
7 Measurement of sound pressure levels
7.1 Selection of the measurement surface
7.2 Hemispherical measurement surface
7.3 Parallelepiped measurement surface
7.4 Additional procedures for selection of microphone positions
7.5 Measurement
8 Calculation of A-weighted surface sound pressure level and A-weighted sound power level
8.1 Calculation of a-weighted sound pressure level averaged over the measurement surface
8.2 Corrections for background noise
8.3 Corrections for test environment
8.4 Calculation of the A-weighted surface sound pressure level
8.5 Calculation of the A-weighted sound power level
9 Information to be recorded
9.1 Noise source under test
9.2 Test conditions
9.3 Acoustic environment
9.4 Instrumentation
9.5 Acoustical data
9.6 Optional data
10 Information to be reported
Annex A
Annex B
Annex C
Annex D
Annex E

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