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ISO 17208-1:2016

Current
Current

The latest, up-to-date edition.

Underwater acoustics Quantities and procedures for description and measurement of underwater sound from ships Part 1: Requirements for precision measurements in deep water used for comparison purposes
Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English

Published date

03-21-2016

ISO 17208-1:2016 specifies the general measurement system, procedure, and methodology used for the measurement of underwater sound from ships under a prescribed operating condition. It does not specify or provide guidance on underwater noise criteria or address the potential effects of noise on marine organisms.

The resulting quantities are based on the root-mean-square sound pressure levels (SPL), herein used synonymously with sound pressure level or SPL measured in the far field of the ship and normalized to a distance of 1 m and reported in one-third octave bands (see 4.3). In this part of ISO 17208, the result of these measurements is called "radiated noise level". The underwater sound pressure level measurement is performed in the geometric far field and then adjusted to the 1 m normalized distance for use in comparison with appropriate underwater noise criteria.

ISO 17208-1:2016 is applicable to any and all underway surface vessels, either manned or unmanned. It is not applicable to submerged vessels or to aircraft. The method has no inherent limitation on minimum or maximum ship size. It is limited to ships transiting at speeds no greater than 50 kn (25,7 m/s).

The measurement method smooths the variability caused by Lloyd's mirror surface image coherence effects, but does not exclude a possible influence of propagation effects like bottom reflections, refraction and absorption. No specific computational adjustments for these effects are provided in this part of ISO 17208. A specific ocean location is not required to use this part of ISO 17208, but the requirements for an ocean test site are provided.

The intended uses of the method described in this part of ISO 17208 are: to show compliance with contract requirements or criteria, for comparison of one ship to another ship, to enable periodic signature assessments, and for research and development. The intended users include government agencies, research vessel operators, and commercial ship owners.

Additional post-processing would be required to use the data obtained from this measurement method for determination of the ship source levels to perform far field noise predictions such as needed for most environmental impact studies or for creating underwater noise contour maps.

DevelopmentNote
Supersedes ISO/DIS 17208-1 and ISO PAS 17208-1. (03/2016)
DocumentType
Standard
Pages
20
PublisherName
International Organization for Standardization
Status
Current
Supersedes

Standards Relationship
BS ISO 17208-1:2016 Identical
NEN ISO 17208-1 : 2016 Identical
DS ISO 17208-1 : 2016 Identical
DIN ISO 17208-1 E : 2018 Identical
DIN ISO 17208-1:2018-03 Identical

BS ISO 20233-1:2018 Ships and marine technology. Model test method for propeller cavitation noise evaluation in ship design Source level estimation
ISO 20233-1:2018 Ships and marine technology — Model test method for propeller cavitation noise evaluation in ship design — Part 1: Source level estimation
ISO 18406:2017 Underwater acoustics — Measurement of radiated underwater sound from percussive pile driving
BS ISO 18406:2017 Underwater acoustics. Measurement of radiated underwater sound from percussive pile driving
17/30322288 DC : 0 BS ISO 17208-2 - UNDERWATER ACOUSTICS - QUANTITIES AND PROCEDURES FOR DESCRIPTION AND MEASUREMENT OF UNDERWATER NOISE FROM SHIPS - PART 2: DETERMINATION OF SOURCE LEVELS
16/30346489 DC : 0 BS ISO 20233-1 - SHIPS AND MARINE TECHNOLOGY - MODEL TEST METHOD FOR PROPELLER CAVITATION NOISE EVALUATION IN SHIP DESIGN - PART 1: SOURCE LEVEL ESTIMATION

ISO 11202:2010 Acoustics Noise emitted by machinery and equipment Determination of emission sound pressure levels at a work station and at other specified positions applying approximate environmental corrections
IEC 60565:2006 Underwater acoustics - Hydrophones - Calibration in the frequency range 0,01 Hz to 1 MHz
IEC 61260:1995 Electroacoustics - Octave-band and fractional-octave-band filters
ISO 18431-2:2004 Mechanical vibration and shock — Signal processing — Part 2: Time domain windows for Fourier Transform analysis
ISO/IEC Guide 98-3:2008 Uncertainty of measurement — Part 3: Guide to the expression of uncertainty in measurement (GUM:1995)

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