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EN 13141-8:2014

Withdrawn
Withdrawn

A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

Ventilation for buildings - Performance testing of components/products for residential ventilation - Part 8: Performance testing of un-ducted mechanical supply and exhaust ventilation units (including heat recovery) for mechanical ventilation systems intended for a single room
Withdrawn date

31-12-2014

Published date

25-06-2014

Foreword
Introduction
1 Scope
2 Normative references
3 Terms, definitions and classification
4 Symbols and abbreviations
5 Test methods
6 Classification
7 Requirements
8 Calculations
9 Performance testing of acoustic characteristics
10 Test results
11 Cleaning and maintenance
Annex A (informative) - Test layouts
Annex B (normative) - Pressure leakage test method
Annex C (normative) - Indoor mixing
Bibliography

This European Standard specifies the laboratory test methods and test requirements for the testing of aerodynamic, thermal and acoustic performance, and the electrical power of an un-ducted mechanical supply and exhaust ventilation unit used in a single room.The purpose of this European Standard is not to consider the quality of ventilation but to test the performance of the equipment.In general, a ventilation unit contains:- supply and exhaust air fans;- air filters;- air to air heat exchanger or air storage mass for exhaust air heat and humidity recovery;- control system;- inlet and outlet grilles.Such equipment can be provided in more than one assembly, the separate assemblies of which are designed to be used together.Such equipment can contain alternating heat exchangers which provide separate supply and exhaust air flows.In certain cases, i.e. alternating ventilation unit, the manufacturer may recommend that the equipment can be installed in such a way that it serves more than one room. For the purpose of this European Standard, these products are assessed in a single room.This European Standard does not deal with ducted units or units with heat pumps.Safety requirements are given in EN 60335 2 80:2003 [2].

Committee
CEN/TC 156
DocumentType
Standard
PublisherName
Comite Europeen de Normalisation
Status
Withdrawn

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12/30259182 DC : 0 BS EN 13142 - VENTILATION FOR BUILDINGS - COMPONENTS/PRODUCTS FOR RESIDENTIAL VENTILATION - REQUIRED AND OPTIONAL PERFORMANCE CHARACTERISTICS
I.S. EN 16798-5-1:2017 ENERGY PERFORMANCE OF BUILDINGS - VENTILATION FOR BUILDINGS - PART 5-1: CALCULATION METHODS FOR ENERGY REQUIREMENTS OF VENTILATION AND AIR CONDITIONING SYSTEMS (MODULES M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - METHOD 1: DISTRIBUTION AND GENERATION
EN 16798-5-2:2017 Energy performance of buildings - Ventilation for buildings - Part 5-2: Calculation methods for energy requirements of ventilation systems (Modules M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - Method 2: Distribution and generation
UNI EN 13142 : 2013 VENTILATION FOR BUILDINGS - COMPONENTS/PRODUCTS FOR RESIDENTIAL VENTILATION - REQUIRED AND OPTIONAL PERFORMANCE CHARACTERISTICS
DIN EN 16798-5-2 E : 2017 ENERGY PERFORMANCE OF BUILDINGS - VENTILATION FOR BUILDINGS - PART 5-2: CALCULATION METHODS FOR ENERGY REQUIREMENTS OF VENTILATION SYSTEMS (MODULES M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - METHOD 2: DISTRIBUTION AND GENERATION
DIN EN 16798-5-2:2015-06 (Draft) ENERGY PERFORMANCE OF BUILDINGS - VENTILATION FOR BUILDINGS - PART 5-2: CALCULATION METHODS FOR ENERGY REQUIREMENTS OF VENTILATION SYSTEMS (MODULES M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - METHOD 2: DISTRIBUTION AND GENERATION
PREN 13142 : DRAFT 2012 VENTILATION FOR BUILDINGS - COMPONENTS/PRODUCTS FOR RESIDENTIAL VENTILATION - REQUIRED AND OPTIONAL PERFORMANCE CHARACTERISTICS
I.S. EN 16798-5-2:2017 ENERGY PERFORMANCE OF BUILDINGS - VENTILATION FOR BUILDINGS - PART 5-2: CALCULATION METHODS FOR ENERGY REQUIREMENTS OF VENTILATION SYSTEMS (MODULES M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - METHOD 2: DISTRIBUTION AND GENERATION
I.S. EN 13142:2013 VENTILATION FOR BUILDINGS - COMPONENTS/PRODUCTS FOR RESIDENTIAL VENTILATION - REQUIRED AND OPTIONAL PERFORMANCE CHARACTERISTICS
DIN EN 13142:2013-06 Ventilation for buildings - Components/products for residential ventilation - Required and optional performance characteristics
BS EN 13142:2013 Ventilation for buildings. Components/products for residential ventilation. Required and optional performance characteristics
BS EN 16798-5-2:2017 Energy performance of buildings. Ventilation for buildings Calculation methods for energy requirements of ventilation systems (Modules M5-6, M5-8, M6-5, M6-8, M7-5, M7-8). Method 2: Distribution and generation
EN 16798-5-1:2017 Energy performance of buildings - Ventilation for buildings - Part 5-1: Calculation methods for energy requirements of ventilation and air conditioning systems (Modules M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - Method 1: Distribution and generation
BS EN 16798-5-1:2017 Energy performance of buildings. Ventilation for buildings Calculation methods for energy requirements of ventilation and air conditioning systems (Modules M5-6, M5-8, M6-5, M6-8, M7-5, M7-8). Method 1: Distribution and generation
11/30234297 DC : 0 BS EN 13142 - VENTILATION FOR BUILDINGS - COMPONENTS/PRODUCTS FOR RESIDENTIAL VENTILATION - REQUIRED AND OPTIONAL PERFORMANCE CHARACTERISTICS
DIN EN 16798-5-2:2017-11 ENERGY PERFORMANCE OF BUILDINGS - VENTILATION FOR BUILDINGS - PART 5-2: CALCULATION METHODS FOR ENERGY REQUIREMENTS OF VENTILATION SYSTEMS (MODULES M5-6, M5-8, M6-5, M6-8, M7-5, M7-8) - METHOD 2: DISTRIBUTION AND GENERATION

ISO 3744:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering methods for an essentially free field over a reflecting plane
EN ISO 10140-5:2010/A1:2014 ACOUSTICS - LABORATORY MEASUREMENT OF SOUND INSULATION OF BUILDING ELEMENTS - PART 5: REQUIREMENTS FOR TEST FACILITIES AND EQUIPMENT (ISO 10140-5:2010)
ISO 10140-2:2010 Acoustics Laboratory measurement of sound insulation of building elements Part 2: Measurement of airborne sound insulation
EN ISO 3743-2:2009 Acoustics - Determination of sound power levels of noise sources using sound pressure - Engineering methods for small, movable sources in reverberant fields - Part 2: Methods for special reverberation test rooms (ISO 3743-2:1994)
ISO 3743-2:1994 Acoustics Determination of sound power levels of noise sources using sound pressure Engineering methods for small, movable sources in reverberant fields Part 2: Methods for special reverberation test rooms
ISO 9614-1:1993 Acoustics — Determination of sound power levels of noise sources using sound intensity — Part 1: Measurement at discrete points
EN 12792:2003 Ventilation for buildings - Symbols, terminology and graphical symbols
EN 60335-2-80:2003/A2:2009 HOUSEHOLD AND SIMILAR ELECTRICAL APPLIANCES - SAFETY - PART 2-80: PARTICULAR REQUIREMENTS FOR FANS
ISO 10140-1:2016 Acoustics Laboratory measurement of sound insulation of building elements Part 1: Application rules for specific products
EN ISO 3741:2010 Acoustics - Determination of sound power levels and sound energy levels of noise sources using sound pressure - Precision methods for reverberation test rooms (ISO 3741:2010)
IEC 60335-2-80:2015 RLV Household and similar electrical appliances - Safety - Part 2-80: Particular requirements for fans
ISO 9614-2:1996 Acoustics — Determination of sound power levels of noise sources using sound intensity — Part 2: Measurement by scanning
EN ISO 10140-1:2016 ACOUSTICS - LABORATORY MEASUREMENT OF SOUND INSULATION OF BUILDING ELEMENTS - PART 1: APPLICATION RULES FOR SPECIFIC PRODUCTS (ISO 10140-1:2016)
EN ISO 3745:2012/A1:2017 ACOUSTICS - DETERMINATION OF SOUND POWER LEVELS AND SOUND ENERGY LEVELS OF NOISE SOURCES USING SOUND PRESSURE - PRECISION METHODS FOR ANECHOIC ROOMS AND HEMI-ANECHOIC ROOMS (ISO 3745:2012/AMD 1:2017)
EN 13142:2013 Ventilation for buildings - Components/products for residential ventilation - Required and optional performance characteristics
EN 306:1997 Heat exchangers - Methods of measuring the parameters necessary for establishing the performance
EN 13141-4:2011 Ventilation for buildings - Performance testing of components/products for residential ventilation - Part 4: Fans used in residential ventilation systems
EN 779:2012 Particulate air filters for general ventilation - Determination of the filtration performance
EN ISO 3744:2010 Acoustics - Determination of sound power levels and sound energy levels of noise sources using sound pressure - Engineering methods for an essentially free field over a reflecting plane (ISO 3744:2010)
EN ISO 10140-2:2010 Acoustics - Laboratory measurement of sound insulation of building elements - Part 2: Measurement of airborne sound insulation (ISO 10140-2:2010)
EN ISO 9614-2 : 1996 ACOUSTICS - DETERMINATION OF SOUND POWER LEVELS OF NOISE SOURCES USING SOUND INTENSITY - PART 2: MEASUREMENT BY SCANNING
EN ISO 3743-1:2010 Acoustics - Determination of sound power levels and sound energy levels of noise sources using sound pressure - Engineering methods for small movable sources in reverberant fields - Part 1: Comparison method for a hard-walled test room (ISO 3743-1:2010)
ISO 717-1:2013 Acoustics Rating of sound insulation in buildings and of building elements Part 1: Airborne sound insulation
ISO 3741:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Precision methods for reverberation test rooms
ISO 10140-5:2010 Acoustics Laboratory measurement of sound insulation of building elements Part 5: Requirements for test facilities and equipment
ISO 3745:2012 Acoustics — Determination of sound power levels and sound energy levels of noise sources using sound pressure — Precision methods for anechoic rooms and hemi-anechoic rooms
EN ISO 9614-1:2009 Acoustics - Determination of sound power levels of noise sources using sound intensity - Part 1: Measurement at discrete points (ISO 9614-1:1993)
ISO 3743-1:2010 Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering methods for small movable sources in reverberant fields Part 1: Comparison method for a hard-walled test room

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