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Acoustics -- Framework for calculating a distribution of sound exposure levels for impulsive sound events for the purposes of environmental noise assessment
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GB/T 34834-2017
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Basic data | Standard ID | GB/T 34834-2017 (GB/T34834-2017) | | Description (Translated English) | Acoustics -- Framework for calculating a distribution of sound exposure levels for impulsive sound events for the purposes of environmental noise assessment | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | A59 | | Classification of International Standard | 17.140 | | Word Count Estimation | 35,311 | | Date of Issue | 2017-11-01 | | Date of Implementation | 2018-05-01 | | Regulation (derived from) | National Standard Announcement 2017 No. 29 | | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China |
GB/T 34834-2017: Acoustics -- Framework for calculating a distribution of sound exposure levels for impulsive sound events for the purposes of environmental noise assessment ---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Acoustics-Framework for calculating a distribution of sound exposure levels for impulsive sound events for the purposes of environmental noise assessment
ICS 17.140
A59
National Standards of People's Republic of China
Impulsive Acoustic Noise Exposure in Acoustic Environmental Noise Assessment
Sound level distribution calculation method
Acoustics-Framework forcalculatingadistributionofsoundexposurelevelsfor
(ISO 13474.2009, IDT)
Posted.2017-11-01
2018-05-01 implementation
General Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
China National Standardization Administration released
Directory
Preface Ⅰ
Introduction Ⅱ
1 Scope 1
2 Normative references 1
3 Terms and definitions 1
4 basic formula 5
5 Statistical Distribution Calculation 8
6 Calculation of attenuation 11
7 级 15
8 Sound velocity profile probability of occurrence 17
9 sound source 20
Uncertainty 22
Appendix A (informative) Single event exposure sound level statistics distribution estimation case 23
Appendix B (Informative) Uncertainty 28
References 30
Foreword
This standard was drafted in accordance with the rules given in GB/T 1.1-2009.
This standard uses the translation method identical with ISO 13474.2009 "acoustic environmental noise evaluation pulse sound incident exposure sound level distribution
Calculation method ".
The documents of our country that are consistent with the corresponding international documents that are normative references in this section are as follows.
--- GB/T 3222.1-2006 Acoustical environmental noise description, measurement and evaluation - Part 1. Basic parameters and evaluation methods
(ISO .1996-1.2003, IDT)
--- GB/T 3358.1-2009 statistical vocabulary and symbols - Part 1. General statistical terms and terms used in probability
(ISO 3534-1.2006, IDT)
--- GB/T 17247.1-2000 acoustic outdoor sound propagation attenuation Part 1. Calculation of atmospheric sound absorption (eqv
ISO 9613-1.1993)
Acoustics - Outdoor sound propagation attenuation - Part 2. General methods of calculation (eqvISO 9613-2.
1996)
This standard proposed by the Chinese Academy of Sciences.
This standard by the National Acoustic Standardization Technical Committee (SAC/TC17) centralized.
This standard was drafted unit. Zhejiang University, Zhejiang Institute of Science and Technology, Yixing City Product Quality Supervision and Inspection Institute, Institute of Acoustics, Chinese Academy of Sciences,
Tongji University, Shenzhen Zhongya Electromechanical Industry Co., Ltd., China Institute of Metrology, Beijing Institute of Labor Protection, Harbin Engineering
University, Changsha Aobang Environmental Protection Industry Co., Ltd., Hefei University of Technology.
The main drafters of this standard. Zhai Guoqing, Li Zhenguang, Li Xiaodong, Cheng Mingkun, Lv Yadong, Xu Xin, Prince, Wu Yincheng, Yu Wuzhou, Mao Dongxing,
Fang Qingchuan, He Longbiao, Lee Hsiao-wide, Hok Man-shing, Zhang Lin, Mo Jian Yan, Li Zhiyuan.
Introduction
This standard is intended to provide a method for quantifying the amount of description used in environmental noise assessment. This standard gives one for calculation
Engineering Method of Statistic Distribution of Acoustic Level of Acoustic Incident at a Distance from High Energy Pulsed Sound Source. This standard applies to environmental noise assessment, not applicable
Assessment of risk of damage to buildings and risk of harm to animals or humans.
In ISO 9613-2, the irradiance levels calculated from downwind sources such as traffic and industrial sources are calculated, with the correction factor Cmet
Based on long-term average sound level estimation. At this time, the sound from the sound source at the calculated point is evaluated as ambient noise. ISO 9613-2 only
A-weighted sound level calculation applicable to non-impulsive sound of sound source and receiving point adjacent to the ground with a pitch not exceeding approximately 1000 m. For high-energy pulse sound
The duration of the source and pulsed acoustic events is short, and their low-frequency acoustic energy is more pronounced than those of traffic and industrial noise sources. At a given distance, in the atmosphere
Low-frequency sound attenuation is usually less pronounced than high-frequency sound, so the effects of sound level need to be taken into account when the sound propagation distance is large.
This standard gives the method of considering the meteorological effects of ground reflection, terrain obstruction, and refraction, turbulence. This method is based on strong sound source
Degrees Calculates the sound emission level distribution for a series of atmospheric conditions, each of which is a combination of specific atmospheric absorption levels and over-attenuation levels.
The actual calculation according to this procedure should take into account the statistical contribution of meteorological and surface conditions. Wind speed, wind direction, temperature, humidity and atmospheric stability
Histograms of frequency of occurrence can be used to describe the above levels. According to the illumination sound level distribution can be calculated by a number of evaluation indicators, such as weight
After the average --- long-term average irradiation sound level, the weighting factor by the attention of the corresponding period at different atmospheric conditions within the probability of decision.
Impulsive Acoustic Noise Exposure in Acoustic Environmental Noise Assessment
Sound level distribution calculation method
1 Scope
This standard specifies the method of calculating the statistical distribution of impulse sound exposure level by engineering method in environmental noise assessment.
This standard applies to moderate charge (such as 0.05kg ~ 1000kgTNT equivalent), the use of conventional explosives mine blasting, firing and frying
Bomb explosions and other sources of long distance generated (such as 0.5km ~ 30km) pulse sound. The standard takes into account meteorological conditions and the terrestrial sound propagation
Impact.
2 Normative references
The following documents for the application of this section is essential. For dated references, only the dated version applies to this article
Pieces. For undated references, the latest edition (including all amendments) applies to this document.
ISO .1996-1 Description, measurement and evaluation of acoustic ambient noise Part 1. Basic parameters and evaluation methods (Acoustics-
Description, measurementandassessmentofvironmentalnoise-Part 1.Basicquantitiesandassess-
mentprocedures)
ISO 3534-1 Statistics Terms and Symbols Part 1. General Statistics Terms and Terms for Statistics (Statistics-Vocab-
ularyandsymbols-Part 1.Generalstatisticaltermsandtermsusedinprobability)
ISO 9613-1 Acoustics outdoor acoustic propagation attenuation Part 1. Calculation of atmospheric sound absorption (Acoustics-Attenuationof
soundduringpropagationoutdoors-Part 1.Calculationoftheabsorptionofsoundbytheatmosphere)
ISO 9613-2 acoustic outdoor sound propagation attenuation Part 2. General calculation method (Acoustics-Attenuationofsound
duringpropagationoutdoors-Part 2.Generalmethodofcalculation)
ISO 17201-1 Acoustics - Part 1. Measurement of muzzle detonation (Acoustics-Noisefromshooting
ranges-Part 1.Determinationofmuzzleblastbymeasurement)
ISO 17201-2 Acoustics - Part 2. Estimation of muzzle detonation and projectile noise (Acoustics - Noise
fromshootingranges-Part 2.Estimationofmuzzleblastandprojecoundoundbycalculation)
ISO 17201-4 Acoustics-Noise in Scout Part 4. Acoustics-Noisefromshootingran-
ges-Part 4.Predictionofprojectilesound)
ISO /IEC Guide 98-3 Uncertainty of Measurement Part 3. Guidance on Uncertainty of Measurement [Uncertaintyof
measurement-Part 3.Guidetotheexpressionofuncertaintyinmeasurement (GUM.1995)]
VDIMSR8/559 heavy weapons noise emission and irradiation measurement standard method [StandardMethodtoMeasurethe
SoundExposureEmissionsandImmissionsfromLargeWeapons (StandardmethodezurMessungder
Geräuschemissionenund-immissionenvonschweren Waffen, Edmund Buchta (ed.), In Meß-,
Steuerungs-und Regelungstechnik, No. 8/559, Fortschritt-Berichte, VD Verlag, Düsseldorf,.1996 (in
EnglishandGerman)]
3 Terms and definitions
The following terms and definitions apply to this document.
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