ISO 9613-2:2024 PDF
Acoustics — Attenuation of sound during propagation outdoors — Part 2: Engineering method for the prediction of sound pressure levels outdoors
Acoustics — Attenuation of sound during propagation outdoors — Part 2: Engineering method for the prediction of sound pressure levels outdoors
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 46
- Дата публикации:
- 12 января 2024 г.
- Издание:
- ISO IS 9613 edition 2 version 1
- ICS:
- 17.140.01
This document specifies an engineering method for calculating the attenuation of sound during propagation outdoors in order to predict the levels of environmental noise at a distance from a variety of sources. The method predicts the equivalent continuous A-weighted sound pressure level (as described in ISO 1996-series) under meteorological conditions favourable to propagation from sources of known sound emission. These conditions are for downwind propagation or, equivalently, propagation under a well-developed moderate ground‑based temperature inversion, such as commonly occurs in clear, calm nights. Inversion conditions over extended water surfaces are not covered and may result in higher sound pressure levels than predicted from this document (see e.g. References [11] and [12]). The method also predicts a long-term average A‑weighted sound pressure level as specified in ISO 1996-1 and ISO 1996-2. The long-term average A‑weighted sound pressure level encompasses levels for a wide variety of meteorological conditions. Guidance has been provided to derive a meteorological correction based on the angular wind distribution relevant for the reference or long-term time interval as specified in ISO 1996-1:2016, 3.2.1 and 3.2.2. Examples for reference time intervals are day, night, or the hour of the night with the largest value of the sound pressure level. Long-term time intervals over which the sound of a series of reference time intervals is averaged or assessed representing a significant fraction of a year (e.g. 3 months, 6 months or 1 year). The method specified in this document consists specifically of octave band algorithms (with nominal mid-band frequencies from 63 Hz to 8 kHz) for calculating the attenuation of sound which originates from a point sound source, or an assembly of point sources. The source (or sources) may be moving or stationary. Specific terms are provided in the algorithms for the following physical effects: — geometrical divergence; — atmospheric absorption; — ground effect; — reflection from surfaces; — screening by obstacles. Additional information concerning propagation through foliage, industrial sites and housing is given in Annex A. The directivity of chimney-stacks to support the sound predictions for industrial sites has been included with Annex B. An example how the far-distance meteorological correction C0 can be determined from the local wind-climatology is given in Annex C. Experiences of the last decades how to predict the sound pressure levels caused by wind turbines is summarized in Annex D. The method is applicable in practice to a great variety of noise sources and environments. It is applicable, directly, or indirectly, to most situations concerning road or rail traffic, industrial noise sources, construction activities, and many other ground-based noise sources. It does not apply to sound from aircraft in flight, or to blast waves from mining, military, or similar operations. To apply the method of this document, several parameters need to be known with respect to the geometry of the source and of the environment, the ground surface characteristics, and the source strength in terms of octave band sound power levels for directions relevant to the propagation. If only A‑weighted sound power levels of the sources are known, the attenuation terms for 500 Hz may be used to estimate the resulting attenuation. The accuracy of the method and the limitations to its use in practice are described in Clause 9.
Abstract
Overview
ISO 9613-2:2024 - Acoustics: Attenuation of sound during propagation outdoors (Part 2) specifies an engineering method to predict outdoor sound pressure levels from a variety of ground‑based sources. The standard gives octave‑band algorithms (63 Hz to 8 kHz) to calculate attenuation mechanisms and to estimate the A‑weighted equivalent continuous sound pressure level (LAeq) under meteorological conditions favourable to propagation (downwind or moderate ground‑based temperature inversion). It also provides methods to estimate long‑term average A‑weighted levels as used in the ISO 1996 series.
Key topics and technical requirements
- Octave‑band prediction method for point sources or assemblies of point sources (moving or stationary), using nominal mid‑band frequencies 63 Hz–8 kHz.
- Attenuation components explicitly modelled:
- Geometrical divergence
- Atmospheric absorption (reference to ISO 9613‑1 for absorption coefficients)
- Ground effect (ground attenuation) with both general and simplified calculation methods
- Screening (barrier diffraction and lateral diffraction) including strategies for combining diffracted paths
- Reflections (single and multi‑reflection, including cylindrical surfaces)
- Meteorological correction (C0) guidance, including an example method to derive corrections from local wind‑climatology (Annex C).
- Annexes offering practical extensions:
- Annex A - foliage, industrial sites, housing
- Annex B - chimney‑stack directivity correction
- Annex D - experience and guidance for wind turbine noise prediction
- Inputs required: source geometry and directivity, octave‑band sound power levels, ground surface characteristics, and environmental geometry.
- Accuracy and limitations are described (Clause 9); the method excludes aircraft in flight and blast waves, and inversion over extended water surfaces may give higher levels than predicted.
Practical applications
- Environmental noise assessment for road and rail traffic, industrial plants, construction sites, and many other ground‑based sources.
- Long‑term community noise prediction and compliance modelling for planning and permitting.
- Design of noise mitigation (barriers, site layout, stack orientation) and evaluation of screening or reflective surfaces.
- Engineering inputs for acoustic modelling software and noise mapping tools.
Who should use this standard
- Acoustic consultants and environmental noise engineers
- Urban and transport planners, permitting authorities
- Industrial noise control specialists and plant designers
- Developers of acoustic modeling software
- Researchers assessing ground‑based noise propagation (including wind turbine noise applications)
Related standards
- ISO 9613‑1:1993 (atmospheric absorption)
- ISO 1996 series (description and assessment of environmental noise)
- ISO 3740 and ISO 8297 (sound power determination)
- IEC 61672‑1, IEC 61260‑1 (A‑weighting and octave filters)
- ISO/TR 17534‑3 (software implementation guidance)
Keywords: ISO 9613-2:2024, acoustics, outdoor sound propagation, environmental noise prediction, A‑weighted sound pressure level, meteorological correction, ground effect, atmospheric absorption, screening, octave band.
Технические детали
- Технический комитет
- ISO/TC 43/SC 1 - Noise
- SKU
- ISO 9613-2:2024
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