IEC 60534-8-2:2011 PDF
Industrial-process control valves - Part 8-2: Noise considerations - Laboratory measurement of noise generated by hydrodynamic flow through control valves
Industrial-process control valves - Part 8-2: Noise considerations - Laboratory measurement of noise generated by hydrodynamic flow through control valves
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 45
- Дата публикации:
- 12 октября 2011 г.
- Издание:
- IEC IS 60534 edition 2 version 1
- ICS:
- 17.140.20
IEC 60534-8-2:2011 includes the method for measuring the sound pressure level due to liquid flow through a control valve and the method for determining the characteristic increase of noise due to the onset of cavitation. It also defines the equipment, methods and procedures for the laboratory measurement of the airborne sound needed to determine these characteristics. Two methods are provided for testing the noise generating characteristics of control valves. The first is a uniform method of measuring the radiated noise from the valve and the associated test piping including fixed flow restrictions through which the test fluid (water) is passing. The second is a procedure for measuring the sound pressure levels within pipe systems upstream and downstream of the valve under fixed operating conditions. This second edition cancels and replaces the first edition published in 1991 and constitutes a technical revision that includes internal noise measurement.
Abstract
Overview
IEC 60534-8-2:2011 is an essential international standard published by the International Electrotechnical Commission (IEC) that addresses noise considerations in industrial-process control valves. Specifically, it focuses on the laboratory measurement of noise generated by hydrodynamic flow through control valves. The standard prescribes detailed methods, equipment, and procedures for assessing the sound pressure levels caused by liquid flow, particularly water, through control valves in controlled laboratory settings.
This second edition, replacing the first from 1991, introduces significant technical revisions, including internal noise measurement techniques. The standard aids in reliably quantifying noise emissions, which is critical for valve design, selection, and maintenance to meet noise regulations and operational requirements in industrial environments.
Key Topics
-
Noise Measurement Methods IEC 60534-8-2 specifies two primary testing approaches:
- Radiated noise measurement from the valve and associated test piping with fixed flow restrictions.
- Sound pressure level measurement inside the piping system, upstream and downstream of the valve, under fixed operating conditions. The latter method provides higher accuracy by eliminating pipe transmission inaccuracies.
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Determination of Characteristic Noise Increase Due to Cavitation The standard includes procedures for identifying the characteristic pressure ratio ( x ) that signals the onset of cavitation noise, crucial for predicting valve noise behavior during operation.
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Instrumentation and Test Setup Comprehensive guidelines on test specimen preparation, acoustic test environments, pressure taps, and instrumentation calibration ensure reproducibility and accuracy of results.
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Internal and External Noise Measurement The inclusion of internal noise measurement expands the understanding of how noise propagates through piping systems, providing deeper insights for noise control.
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Reference Fluids and Conditions Water is the specified test fluid to maintain consistency across labs and applications. Tests with other fluids or valves without downstream piping are outside this standard's scope.
Applications
IEC 60534-8-2:2011 serves multiple practical purposes in industrial and process engineering:
-
Valve Acoustic Characterization Helps manufacturers and users evaluate valve noise levels under controlled conditions to ensure compliance with noise control standards and optimize valve design for quieter operation.
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Noise Prediction and Comparison Enables comparison among different valve types and noise data, facilitating better selection for noise-sensitive applications.
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Service Life and Noise Reduction Planning Understanding noise generation aids in planning maintenance schedules and implementing noise abatement measures, prolonging valve lifespan and improving workplace environments.
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Flow Measurement Accuracy Helps identify potential adverse effects of valve noise on ultra-sonic flow meters, ensuring measurement reliability.
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Design of Noise Mitigation Solutions Provides data necessary for the proper sizing and placement of sound absorbers and other noise control components in piping systems.
Related Standards
IEC 60534-8-2:2011 complements and references other international standards, creating a comprehensive noise and valve performance framework:
- IEC 60534-1:2005 – Control valve terminology and general considerations
- IEC 60534-2-3:1997 – Flow capacity test procedures for control valves
- IEC 60534-8-4 – Noise considerations and prediction of noise generated by hydrodynamic flow through control valves
- IEC 61672-1:2002 – Specifications for sound level meters
- ISO 3744:1994 – Engineering methods for sound power level determination in free field conditions
- ISO 3745:2003 – Precision methods for sound power level determination in anechoic chambers
These standards together support a robust methodology for valve noise measurement, prediction, and control, enabling industries to meet stringent noise regulations and improve process control reliability.
Keywords: IEC 60534-8-2, industrial-process control valves, noise measurement, hydrodynamic flow noise, cavitation noise, sound pressure level, valve acoustic characterization, lab noise testing, valve noise prediction, noise abatement, industrial valve standards, control valve noise measurement, ultrasonic flow meter noise, sound absorber sizing.
Технические детали
- Технический комитет
- SC 65B - Measurement and control devices
- SKU
- IEC 60534-8-2:2011
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