Air intake filter systems for rotary machinery - Test methods - Part 2: Filter element endurance test in fog and mist environments (ISO 29461-2:2022)

This document specifies general test requirements, the test rig and equipment, the test materials and the test procedure and report for determining water endurance performance of air filter elements used in air intake filter systems for rotary machinery such as stationary gas turbines, compressors and other stationary internal combustion engines.
The test evaluates water endurance performance of air filter elements under laboratory conditions. The performance results obtained in accordance with this document cannot be quantitatively applied (by themselves) to predict performance in service with regard to water endurance and lifetime.

Ansaugfiltersysteme von Rotationsmaschinen - Prüfverfahren - Teil 2: Dauertest für Filterelemente in Nebel- und Nebelumgebungen (ISO 29461-2:2022)

Dieses Dokument legt die allgemeinen Prüfanforderungen, den Prüfstand und die Prüfausrüstung, die Prüfmaterialien, das Prüfverfahren und den Prüfbericht für die Bestimmung des Wasserbeständigkeitsverhaltens von Luftfilterelementen fest, die in Lufteinlassfiltersystemen für Rotationsmaschinen wie stationäre Gasturbinen, Kompressoren und andere stationäre Verbrennungsmotoren verwendet werden.
Die Prüfung bewertet das Wasserbeständigkeitsverhalten von Luftfilterelementen unter Laborbedingungen. Die nach diesem Dokument für die Leistung ermittelten Ergebnisse können nicht unmittelbar zur quantitativen Vorhersage der Leistung bezogen auf Wasserbeständigkeit und Lebensdauer für den jeweiligen Anwendungsfall des Filters verwendet werden.

Systèmes de filtration d'air d'admission pour machines tournantes - Méthodes d'essai - Partie 2: Essai d'endurance d'élément filtrant en brouillard et environnement brumeux (ISO 29461-2:2022)

Le présent document spécifie les exigences générales d'essai, le banc et les équipements d'essai, les produits pour l'essai, le mode opératoire d'essai et le rapport pour la détermination des performances de résistance à l'eau des éléments filtrants utilisés dans les systèmes de filtration d'air d'admission des machines tournantes comme les turbines à gaz stationnaires, les compresseurs et autres moteurs stationnaires à combustion interne.
L'essai évalue la performance de résistance à l'eau des éléments filtrants dans des conditions de laboratoire. Les données de performances obtenues conformément au présent document ne peuvent pas être utilisées quantitativement (par elles-mêmes) pour prédire les performances en service en termes de résistance à l'eau et de durée de vie.

Zračni filtrski sistemi rotacijskih strojev - Preskusne metode - 2. del: Preskus vzdržljivosti filtrskih elementov v okolju z meglo in sparino (ISO 29461-2:2022)

Ta standard določa splošne zahteve, preskuševalno opremo, kvalifikacijo, preskusne materiale, preskusni postopek in poročilo za ugotavljanje vzdržljivosti delovanja elementov v zračnih filtrskih sistemih rotacijskih strojev, kot so nepremične plinske turbine, kompresorji in drugi nepremični motorji z notranjim izgorevanjem.

General Information

Status
Published
Public Enquiry End Date
30-Sep-2021
Publication Date
19-Sep-2022
Technical Committee
I13 - Imaginarni 13
Current Stage
6060 - National Implementation/Publication (Adopted Project)
Start Date
16-Sep-2022
Due Date
21-Nov-2022
Completion Date
20-Sep-2022

Overview

EN ISO 29461-2:2022 - Air intake filter systems for rotary machinery - Test methods - Part 2: Filter element endurance test in fog and mist environments (ISO 29461-2:2022) specifies laboratory test methods to determine water endurance performance of air filter elements used in air intake systems for rotary machinery (for example, stationary gas turbines, compressors and stationary internal combustion engines). The document is published by CEN as the European adoption of ISO 29461-2:2022.

Key points:

  • Defines general test requirements, test rig and equipment, test materials, test procedure and reporting.
  • Evaluates filter behaviour in controlled fog and mist (high-humidity/water droplet) environments.
  • Emphasises that laboratory results cannot, by themselves, be directly or quantitatively extrapolated to predict in-service lifetime or water endurance.

Key topics and technical requirements

The standard covers technical elements necessary to run reproducible water-endurance tests:

  • Test rig and equipment: design and configuration of the test duct, water spray and humidifying devices, and water collection systems.
  • Test media: specifications for test air and test water used to generate fog/mist.
  • Qualification of apparatus: checks such as pressure-system integrity, air leakage, air velocity uniformity, empty-duct pressure drop, wet-environment stability, droplet-size distribution, and water tightness.
  • Test procedure:
    • Preparation of filter elements and measurement of initial pressure drop.
    • Wet equilibrium pre-treatment to simulate pre-wetted conditions (where applicable).
    • Controlled water fog test sequence and monitoring.
    • Measurement of water penetration ratio and performance metrics.
  • Reporting requirements: recommended test report contents, summaries, and interpretation guidance.
  • Informative and normative annexes detail calculations, vertical-installation testing, tests without wet pre-treatment, penetration-ratio methods, leak detection, and example reports.

Applications and users

EN ISO 29461-2:2022 is intended for:

  • Filter manufacturers validating product resistance to fog/mist and developing water-tolerant designs.
  • OEMs (gas turbine, compressor and engine manufacturers) specifying intake filtration performance and procurement criteria.
  • Independent test laboratories performing standardized endurance testing and issuing reports.
  • Maintenance and reliability engineers assessing risk of water-induced pressure-rise or performance loss in intake systems.
  • Procurement and certification bodies requiring harmonized test data for supplier evaluation.

Practical applications include product development, comparative performance assessment, supplier qualification and specification of intake filtration systems for high-humidity or coastal/industrial locations.

Related standards

  • ISO 29461 series (other parts covering filter system test methods and requirements)
  • Coordination with ISO/TC 142 (Cleaning equipment for air and other gases) and applicable CEN adoption documents.

Keywords: EN ISO 29461-2:2022, air intake filter systems, filter element endurance test, fog and mist environments, water endurance, rotary machinery, stationary gas turbines, compressors, test rig, water penetration ratio.

Standard

SIST EN ISO 29461-2:2022 - BARVE

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Frequently Asked Questions

SIST EN ISO 29461-2:2022 is a standard published by the Slovenian Institute for Standardization (SIST). Its full title is "Air intake filter systems for rotary machinery - Test methods - Part 2: Filter element endurance test in fog and mist environments (ISO 29461-2:2022)". This standard covers: This document specifies general test requirements, the test rig and equipment, the test materials and the test procedure and report for determining water endurance performance of air filter elements used in air intake filter systems for rotary machinery such as stationary gas turbines, compressors and other stationary internal combustion engines. The test evaluates water endurance performance of air filter elements under laboratory conditions. The performance results obtained in accordance with this document cannot be quantitatively applied (by themselves) to predict performance in service with regard to water endurance and lifetime.

This document specifies general test requirements, the test rig and equipment, the test materials and the test procedure and report for determining water endurance performance of air filter elements used in air intake filter systems for rotary machinery such as stationary gas turbines, compressors and other stationary internal combustion engines. The test evaluates water endurance performance of air filter elements under laboratory conditions. The performance results obtained in accordance with this document cannot be quantitatively applied (by themselves) to predict performance in service with regard to water endurance and lifetime.

SIST EN ISO 29461-2:2022 is classified under the following ICS (International Classification for Standards) categories: 29.160.99 - Other standards related to rotating machinery. The ICS classification helps identify the subject area and facilitates finding related standards.

You can purchase SIST EN ISO 29461-2:2022 directly from iTeh Standards. The document is available in PDF format and is delivered instantly after payment. Add the standard to your cart and complete the secure checkout process. iTeh Standards is an authorized distributor of SIST standards.

Standards Content (Sample)


SLOVENSKI STANDARD
01-november-2022
Zračni filtrski sistemi rotacijskih strojev - Preskusne metode - 2. del: Preskus
vzdržljivosti filtrskih elementov v okolju z meglo in sparino (ISO 29461-2:2022)
Air intake filter systems for rotary machinery - Test methods - Part 2: Filter element
endurance test in fog and mist environments (ISO 29461-2:2022)
Ansaugfiltersysteme von Rotationsmaschinen - Prüfverfahren - Teil 2: Dauertest für
Filterelemente in Nebel- und Nebelumgebungen (ISO 29461-2:2022)
Systèmes de filtration d'air d'admission pour machines tournantes - Méthodes d'essai -
Partie 2: Essai d'endurance d'élément filtrant en brouillard et environnement brumeux
(ISO 29461-2:2022)
Ta slovenski standard je istoveten z: EN ISO 29461-2:2022
ICS:
29.160.99 Drugi standardi v zvezi z Other standards related to
rotacijskimi stroji rotating machinery
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

EN ISO 29461-2
EUROPEAN STANDARD
NORME EUROPÉENNE
September 2022
EUROPÄISCHE NORM
ICS 29.160.99
English Version
Air intake filter systems for rotary machinery - Test
methods - Part 2: Filter element endurance test in fog and
mist environments (ISO 29461-2:2022)
Systèmes de filtration d'air d'admission pour machines Ansaugfiltersysteme von Rotationsmaschinen -
tournantes - Méthodes d'essai - Partie 2: Essai Prüfverfahren - Teil 2: Dauertest für Filterelemente in
d'endurance d'élément filtrant en brouillard et Nebel- und Nebelumgebungen (ISO 29461-2:2022)
environnement brumeux (ISO 29461-2:2022)
This European Standard was approved by CEN on 24 June 2022.

CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this
European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references
concerning such national standards may be obtained on application to the CEN-CENELEC Management Centre or to any CEN
member.
This European Standard exists in three official versions (English, French, German). A version in any other language made by
translation under the responsibility of a CEN member into its own language and notified to the CEN-CENELEC Management
Centre has the same status as the official versions.

CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia,
Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway,
Poland, Portugal, Republic of North Macedonia, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Türkiye and
United Kingdom.
EUROPEAN COMMITTEE FOR STANDARDIZATION
COMITÉ EUROPÉEN DE NORMALISATION

EUROPÄISCHES KOMITEE FÜR NORMUNG

CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels
© 2022 CEN All rights of exploitation in any form and by any means reserved Ref. No. EN ISO 29461-2:2022 E
worldwide for CEN national Members.

Contents Page
European foreword . 3

European foreword
This document (EN ISO 29461-2:2022) has been prepared by Technical Committee ISO/TC 142
"Cleaning equipment for air and other gases" in collaboration with Technical Committee CEN/TC 195
“Cleaning equipment for air and other gases” the secretariat of which is held by UNI.
This European Standard shall be given the status of a national standard, either by publication of an
identical text or by endorsement, at the latest by March 2023, and conflicting national standards shall
be withdrawn at the latest by March 2023.
Attention is drawn to the possibility that some of the elements of this document may be the subject of
patent rights. CEN shall not be held responsible for identifying any or all such patent rights.
Any feedback and questions on this document should be directed to the users’ national standards
body/national committee. A complete listing of these bodies can be found on the CEN website.
According to the CEN-CENELEC Internal Regulations, the national standards organizations of the
following countries are bound to implement this European Standard: Austria, Belgium, Bulgaria,
Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland,
Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Republic of
North Macedonia, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Türkiye and the
United Kingdom.
Endorsement notice
The text of ISO 29461-2:2022 has been approved by CEN as EN ISO 29461-2:2022 without any
modification.
INTERNATIONAL ISO
STANDARD 29461-2
First edition
2022-08
Air intake filter systems for rotary
machinery — Test methods —
Part 2:
Filter element endurance test in fog
and mist environments
Systèmes de filtration d'air d'admission pour machines tournantes —
Méthodes d'essai —
Partie 2: Essai d'endurance d'élément filtrant en brouillard et
environnement brumeux
Reference number
ISO 29461-2:2022(E)
ISO 29461-2:2022(E)
© ISO 2022
All rights reserved. Unless otherwise specified, or required in the context of its implementation, no part of this publication may
be reproduced or utilized otherwise in any form or by any means, electronic or mechanical, including photocopying, or posting on
the internet or an intranet, without prior written permission. Permission can be requested from either ISO at the address below
or ISO’s member body in the country of the requester.
ISO copyright office
CP 401 • Ch. de Blandonnet 8
CH-1214 Vernier, Geneva
Phone: +41 22 749 01 11
Email: copyright@iso.org
Website: www.iso.org
Published in Switzerland
ii
ISO 29461-2:2022(E)
Contents Page
Foreword .v
Introduction . vi
1 Scope . 1
2 Normative references . 1
3 Terms and definitions . 1
4 Symbols and abbreviated terms.3
5 General requirements . 4
6 Test conditions .4
6.1 Test air . 4
6.2 Test water . 4
7 Test rig and equipment .5
7.1 Test rig . 5
7.2 Water spray device . 6
7.3 Humidifying device . 6
7.4 Water collecting groove . 6
8 Qualification of test rig and apparatus . 6
8.1 Pressure system test . 6
8.2 Air leakage test. 6
8.3 Air velocity uniformity in the test duct . 6
8.4 Pressure drop of test duct with no test filter installed . 6
8.5 Stability of wet environment . 6
8.6 Water fog concentration and sedimentation check . 7
8.7 Water tightness test with no test filter installed . 7
8.8 Water droplet size distributions. 7
8.9 Summary of qualification requirements . 7
8.10 Apparatus maintenance . 8
9 Test procedure .8
9.1 Preparation of filter to be tested . 8
9.2 Initial pressure drop . 9
9.3 Test procedure for water endurance performance of filter elements . 9
9.3.1 General . 9
9.3.2 Wet equilibrium pre-treatment . 9
9.3.3 Water fog test . 10
9.4 Water penetration ratio . 10
10 Test report .10
10.1 General . 10
10.2 Interpretation of test reports . 11
10.3 Summaries of test results . 11
10.4 Water fog mass and pressure drop.12
10.5 Marking .12
Annex A (informative) Resistance to air flow and water generation mass calculation .13
Annex B (informative) Water endurance test for vertical installed air filters .14
Annex C (informative) Water endurance of air filter elements without wet equilibrium pre-
treatment .17
Annex D (normative) Water penetration ratio test .19
Annex E (informative) Leak detection and first water droplet detection procedure .20
Annex F (informative) Examples of completed test reports .23
iii
ISO 29461-2:2022(E)
Bibliography .31
iv
ISO 29461-2:2022(E)
Foreword
ISO (the International Organization for Standardization) is a worldwide federation of national standards
bodies (ISO member bodies). The work of preparing International Standards is normally carried out
through ISO technical committees. Each member body interested in a subject for which a technical
committee has been established has the right to be represented on that committee. International
organizations, governmental and non-governmental, in liaison with ISO, also take part in the work.
ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters of
electrotechnical standardization.
The procedures used to develop this document and those intended for its further maintenance are
described in the ISO/IEC Directives, Part 1. In particular, the different approval criteria needed for the
different types of ISO documents should be noted. This document was drafted in accordance with the
editorial rules of the ISO/IEC Directives, Part 2 (see www.iso.org/directives).
Attention is drawn to the possibility that some of the elements of this document may be the subject of
patent rights. ISO shall not be held responsible for identifying any or all such patent rights. Details of
any patent rights identified during the development of the document will be in the Introduction and/or
on the ISO list of patent declarations received (see www.iso.org/patents).
Any trade name used in this document is information given for the convenience of users and does not
constitute an endorsement.
For an explanation of the voluntary nature of standards, the meaning of ISO specific terms and
expressions related to conformity assessment, as well as information about ISO's adherence to
the World Trade Organization (WTO) principles in the Technical Barriers to Trade (TBT), see
www.iso.org/iso/foreword.html.
This document was prepared by Technical Committee ISO/TC 142, Cleaning equipment for air and other
gases, in collaboration with the European Committee for Standardization (CEN) Technical Committee
CEN/TC 195, Cleaning equipment for air and other gases, in accordance with the Agreement on technical
cooperation between ISO and CEN (Vienna Agreement).
A list of all parts in the ISO 29461 series can be found on the ISO website.
Any feedback or questions on this document should be directed to the user’s national standards body. A
complete listing of these bodies can be found at www.iso.org/members.html.
v
ISO 29461-2:2022(E)
Introduction
The ISO 29461 series provides a way to compare these products in a similar method and define what
criteria are important for air intake filter systems for rotary machinery performance protection. The
aim is to compare the performance of different filters and filter types with respect to the operating
conditions in which they will be finally used.
Air intake filter system of rotary machinery is an important part of the whole gas turbine and air
compressor systems. It usually consists of filter elements with a suitable way to be installed. The
operating environment of rotary machinery including gas turbine and compressor and their air intake
filtration units are complicated and challenging. Air filters intercept water mist and droplets when air
passes through the air filter unit in case the equipment is working in rainy, foggy, hazy or other high-
humidity environments or a local production environment which contains a large amount of water
vapour, e.g. the cooling tower. If excessive water holds up, the performance of filters can be affected;
pressure drop rises rapidly, causing a shut down in severe cases.
Reliability and non-break down operation of rotary machinery are regarded as a top priority for the
end users, with the rapidly rising pressure drop under high-humidity conditions usually being their
main concern. There are rotary machinery operating accidents caused by high-humidity conditions all
over the world, whether it be inland or along the river or coastal.
To meet the requirements of production and operation, the water endurance performance of air filter
elements needs to be considered besides assessing the performance of initial pressure drop, filtration
efficiency and dust-holding capacity, especially when the air filter elements are used in high-humidity
environments or intake air contains a large quantity of liquid droplets.
This document provides a water endurance test method for filter elements and can be used for
evaluating performance variation trends of filter elements when encountering water and fog. This
document can be used for:
— product development for filter manufacturers;
— supplier selection for end users;
— development of water endurance media by media manufacturers.
This document provides a repeatable, easy-to-conduct and economical test method, which is applicable
to pulse-jet cleaning filter elements and filter elements for general ventilation.
vi
INTERNATIONAL STANDARD ISO 29461-2:2022(E)
Air intake filter systems for rotary machinery — Test
methods —
Part 2:
Filter element endurance test in fog and mist
environments
1 Scope
This document specifies general test requirements, the test rig and equipment, the test materials and
the test procedure and report for determining water endurance performance of air filter elements used
in air intake filter systems for rotary machinery such as stationary gas turbines, compressors and other
stationary internal combustion engines.
The test evaluates water endurance performance of air filter elements under laboratory conditions. The
performance results obtained in accordance with this document cannot be quantitatively applied (by
themselves) to predict performance in service with regard to water endurance and lifetime.
2 Normative references
The following documents are referred to in the text in such a way that some or all of their content
constitutes requirements of this document. For dated references, only the edition cited applies. For
undated references, the latest edition of the referenced document (including any amendments) applies.
ISO 16890-2:2022, Air filters for general ventilation — Part 2: Measurement of fractional efficiency and air
flow resistance
3 Terms and definitions
For the purposes of this document the following terms and definitions apply.
ISO and IEC maintain terminology databases for use in standardization at the following addresses:
— ISO Online browsing platform: available at https:// www .iso .org/ obp
— IEC Electropedia: available at https:// www .electropedia .org/
3.1 Air flow and pressure drop
3.1.1
air flow rate
volume of air flowing through the filter per unit time
[SOURCE: ISO 29464:2017, 3.1.24]
3.1.2
test air flow rate
volumetric airflow rate used for testing
[SOURCE: ISO 29464:2017, 3.3.2]
ISO 29461-2:2022(E)
3.1.3
pressure drop
difference in absolute (static) pressure between two points in a system
Note 1 to entry: Resistance to air flow is measured in Pa.
[SOURCE: ISO 29464:2017, 3.1.36]
3.1.4
initial pressure drop
pressure drop (3.1.3) of the clean filter operating at the test airflow rate
[SOURCE: ISO 29464:2017, 3.3.17]
3.1.5
final test pressure drop
maximum pressure drop (3.1.3) of the filter up to which the filtration performance is measured
[SOURCE: ISO 29464:2017, 3.3.15]
3.2 Filters
3.2.1
test device
filter element (3.2.2) being subjected to performance testing
[SOURCE: ISO 29464:2017, 3.1.38]
3.2.2
filter element
structure made of the filtering material, its supports and its interfaces with the filter housing
[SOURCE: ISO 29464:2017, 3.2.77]
3.2.3
upstream
area or region from which fluid flows as it enters the test device (3.2.1)
[SOURCE: ISO 29464:2017, 3.1.39]
3.2.4
downstream
area or region into which fluid flows on leaving the test device (3.2.1)
[SOURCE: ISO 29464:2017, 3.1.11]
3.2.5
static filter
air filter that will be removed (exchanged) after it has reached its final test pressure drop (3.1.5) and
that is not cleaned with jet pulses or other means in order to fully, or partially, retrieve its initial
performance (pressure drop and efficiency)
[SOURCE: ISO 29464:2017, 3.3.12]
3.2.6
pulse jet filter
cleanable air filter, that typically is cleaned with air jet pulses to provide a longer service life
[SOURCE: ISO 29464:2017, 3.3.11]
ISO 29461-2:2022(E)
3.3
test duration
period of reaching a certain pressure drop (3.1.3) or other termination conditions to end the test
3.4 Test materials
3.4.1
water fog
water droplets and mist generated by water spray device
3.4.2
saturated air
air that contains the maximum amount of water vapour it can hold at its temperature and pressure
3.4.3
water fog mass concentration
mass of liquid water droplets per unit volume of air
3.5
two-fluid nozzle
nozzles capable of spraying fine mists by mixing fluid and air at the same time
3.6
coefficient of variation
CV
standard deviation of a group of measurements divided by the mean
[SOURCE: ISO 29464:2017, 3.2.31]
4 Symbols and abbreviated terms
c
water fog mass concentration, g/m
wm
d
saturated wet air moisture content, g/kg
d
ambient air moisture content, g/kg
m
water mass penetrated through tested filter at the end of the test, kg
p
m
total water fog generation amount, kg
tot
m
sedimentary water mass upstream of filter, kg
u
m
total water fog generation amount per hour, kg/h
wm
m
water fog generation amount per hour at saturated humidifying air, kg/h
wm, 1
m
water fog generation amount per hour, kg/h
wm, 2
p
atmospheric pressure, Pa
absolute air pressure upstream of filter, Pa
p
a
partial vapour pressure of water in air, Pa
p
w
saturated vapour pressure of humidifying air, Pa
p
ws
q
volumetric flow of non-humidifying air, m /h
v
t
temperature downstream of filter, °C
d
ISO 29461-2:2022(E)
t
dry bulb temperature of ambient air, °C
t
temperature upstream of filter, °C
u
t
wet bulb temperature of ambient air, °C
wb
T
testing time, min
T
total testing time, min
tot
filter initial pressure drop at the test air flow rate, Pa
Δp
b
filter final test pressure drop at the test air flow rate, Pa
Δp
f
filter pressure drop at the test air flow rate at the T time after spraying, Pa
Δp
T
η
water penetration ratio
p
ρ 3
ambient air density, kg/ m
ρ
air density upstream of filter, kg/m
a
ρ
saturated wet air density, kg/m
s
ϕ
relative humidity, %
ϕ
relative humidity upstream of filter, %
u
ϕ
relative humidity downstream of filter, %
d
CV coefficient of variation
5 General requirements
Air filter systems normally use multiple stages of coarse and fine filter elements to protect the
machinery. The scope of this document includes methods for a water endurance test of individual
filter elements. It does not include methods for the direct measurement of the performance of entire
systems as installed in service except in cases where they can meet the qualification criteria for the test
assembly.
The test client can refer to the test results to rank the water endurance performance of multiple
candidate filters.
6 Test conditions
6.1 Test air
Room air or outdoor air is used as the test air source. The air temperature shall be in the range of
10 °C to 38 °C (before wet equilibrium pre-treatment). The exhaust flow shall be discharged outdoors,
indoors or re-circulated. Filtration of the exhaust flow is recommended when the test aerosol or loading
dust is present.
6.2 Test water
The test water pH value shall be in the range of 6 to 8; alkalinity shall be no more than 50 mg/l; full
hardness shall be no more than 70 mg/l. The temperature of the test water shall not be higher than the
temperature of the test air.
ISO 29461-2:2022(E)
7 Test rig and equipment
7.1 Test rig
The test rig consists of several square duct sections with typical 610 mm × 610 mm nominal inner
dimensions except for the section where the filter is installed. This section has nominal inner dimensions
between 616 mm and 622 mm. The length of this duct section shall be at least 1,1 times the length of the
filter, with a minimum length of 1,5 m. A schematic diagram of the test rig is shown in Figure 1.
The test rig can be operated either in a negative or positive pressure air flow arrangement; and negative
pressure operation is recommended. The test duct shall be sealed well to avoid water fog leakage if
operated in positive pressure. A condensed water borehole should be provided at the lowest point in
the fan housing in the event of formation of condensation.
The duct material shall be electrically conductive and electrically grounded and shall have a smooth
interior finish and be sufficiently rigid to maintain its shape at the operating pressure. Smaller parts
of the test duct can be made in glass or plastic to expose the filter and equipment to view. Provision of
windows to allow monitoring of test progress is desirable.
Dimensions in millimetres
Key
A duct section of the test rig (inlet plenum) 7 example of water droplet size instrument location
B upstream duct section of the test rig 8 upstream pressure measuring point
C duct section of filter to be tested 9 upstream water collecting groove
D diameter of recirculated duct 10 filter to be tested
E downstream duct section of the test rig 11 midstream water collecting groove
downstream measuring point of temperature and
F recirculated duct section of the test rig 12
humidity (secondary)
1 HEPA filter 13 downstream pressure measuring point
2 humidifying device 14 downstream water collecting groove
3 water mass flow metering device 15 final filter - eliminate water
4 water mass flow metering device 16 frequency converted fan
5 water spray device 17 air flow measuring point
upstream measuring point of temperature and
humidity (primary)
Figure 1 — Schematic diagram of the test rig
ISO 29461-2:2022(E)
7.2 Water spray device
The water spray device is used to generate uniform water fog continuously to feed the filter to be tested
during the test.
A two-fluid nozzle is recommended; and the spraying direction with respect to the inlet air flow shall
be the same. The distance between the nozzle orifices and the duct section of filter to be tested shall be
no less than 1 m.
The water fog particle can be adjusted by compressed air, or other means as called out by the nozzle
manufacturer. The cumulative volume of water fog particles in the size range of 5 μm to 30 μm shall be
more than 90 % of the total water fog volume.
Other types of water spray devices, such as ultrasonic humidifier and nozzle humidifier, can be used if
these devices can achieve the same performance.
7.3 Humidifying device
The humidifying device shall maintain the required humidity in the test duct, which can be used for
wet equilibrium pre-treatment. The optional humidifying devices, such as ultrasonic humidifier and
atomizer, shall meet the requirements of 8.5.
7.4 Water collecting groove
The water collecting grooves shall be installed at the bottom of upstream and downstream of tested
filter to collect water during the test.
8 Qualification of test rig and apparatus
8.1 Pressure system test
Carry out the pressure system test in accordance with ISO 16890-2:2022, 8.2.1.
8.2 Air leakage test
Carry out the air leakage test in accordance with ISO 16890-2:2022, 8.2.8.
8.3 Air velocity uniformity in the test duct
Carry out the air velocity uniformity test in the test duct in accordance with ISO 16890-2:2022, 8.2.9.
8.4 Pressure drop of test duct with no test filter installed
Carry out the test of pressure drop of test duct with no test filter installed in accordance with
ISO 16890-2:2022, 8.2.12.
8.5 Stability of wet environment
The temperature measuring instrument used shall be capable of measuring temperature with an
accuracy of ±1 °C. The relative humidity measuring instrument used shall be capable of measuring the
relative humidity with an accuracy of ±2 %. The equipment shall be calibrated at regular intervals to
ensure the required accuracy.
Turn on the humidifying device until the measured relative humidity of the upstream and downstream
test duct exceeds 95 % at the qualification air flow rate of 3 400 m /h. Start to record the temperature
and relative humidity of the upstream and downstream test duct every 2 min. The total test time is
30 min.
ISO 29461-2:2022(E)
The relative humidity of upstream and downstream shall always exceed 95 % during the test.
To ensure the stability of the wet environment, it is important to limit the condensation and sediment
water mass to a low level and thus minimize the effect on the water fog concentration and results of
the test, therefore the total mass of water collected in the whole test duct section shall be less than 50 g
after the test.
8.6 Water fog concentration and sedimentation check
This test is used to ensure that the water fog concentration, in the section where the filter is installed,
can meet the requirements of this document.
Weigh and then install the final filter. Start to generate humidity at an air flow rate of 3 400 m /h. The
relative humidity in the upstream duct shall not be less than 95 %.
Turn on the water spray device and adjust the water fog concentration to 6,0 g/m . The duration time is
30 min and the relative humidity in the upstream test duct shall not be less than 95 % during the test.
Turn off the water spray device after 30 min. Weigh the final filter.
Collect the water in the upstream test duct to the upstream groove. The collected water mass shall be
less than 5 % of the total water mass.
8.7 Water tightness test with no test filter installed
This test is used to ensure the water tightness of the duct and that no leakage is found during the whole
water endurance test.
This test is carried out along with the instructions in 8.5 and 8.6.
No droplets leakage shall be found from the test duct during the test.
Collect the water in the upstream and downstream test duct of the filter to be tested and final filter. The
collected water mass shall not be less than 90 % of the total water mass.
8.8 Water droplet size distributions
This test is used to ensure that the water droplet size distribution, in the section where the filter is
installed, can meet the requirements of this document.
A laser diffraction particle size analyser is recommended, which uses the technique of laser diffraction
for measurement of the size of spray droplets and the accuracy shall be better than 3 %. The measuring
point shall be located in the lateral centre of the upstream duct section, and as close as possible to the
duct section of the filter to be tested.
3 3
Turn on the water spray device and adjust the water fog concentration to 6,0 g/m at 3 400 m /h. The
relative humidity in the upstream test duct shall not be less than 95 % during the test.
Measure the size and size distributions of water droplets by the laser particle size analyser. The
cumulative volume of water droplets in the size range of 5 μm to 30 μm shall be more than 90 % of the
total water fog volume.
8.9 Summary of qualification requirements
The test rig and apparatus qualification requirements are shown in Table 1.
ISO 29461-2:2022(E)
Table 1 — Summary of qualification requirements
Items Subclause Requirements
Pressure system test 8.1 No change in Pa
Air leakage test 8.2 < 1 %
Air velocity uniformity 8.3 CV < 10 %
Pressure drop of test duct with no
8.4 < 5 Pa
test filter installed
The relative humidity of upstream and down-
Stability of wet environment 8.5 stream shall always exceed 95 % during the
test
The water mass collected in the upstream test
Water fog concentration and
8.6 duct shall be less than 5 % of the total water
sedimentation check
mass
No droplets leakage, the water mass collected
Water tightness test with no test filter
8.7 in the test duct and the final filter shall not be
installed
less than 90 % of the total water mass
The cumulative volume of water droplets in
Water droplets size distributions 8.8 the size range of 5 μm to 30 μm shall be more
than 90 % of the total water fog volume
8.10 Apparatus maintenance
The maintenance schedule is shown in Table 2.
Table 2 — Maintenance schedule
After any change
a
Maintenance items Subclause Each test Monthly Quarterly Annually that can alter
performance
Pressure system test 8.1  X
Air leakage test 8.2  X
Air velocity uniformity 8.3  X
Pressure drop of test
duct with no test filter 8.4 X X
installed
Stability of wet
8.5 X X
environment
Water fog concentration
8.6 X X
and sedimentation check
Water tightness test
with no test filter 8.7 X X
installed
Water droplets size
8.8 X X
distributions
a
Regular cleaning of all equipment shall be undertaken so that the performance of the test system is maintained.
9 Test procedure
9.1 Preparation of filter to be tested
Install the filter according to the recommendation of the test client or real application. Horizontal
installation for cylindrical filter is recommended. A special vertical test duct can be used for vertical
installation (see Annex B).
ISO 29461-2:2022(E)
The filter shall be weighed to the nearest gram before installation.
The filter, including any normal mounting frame, shall be sealed into the duct in a manner that prevents
leakages. The tightness shall be checked by visual inspection and no visible leaks are acceptable.
Devices requiring external accessories shall be operated during the test with accessories having
characteristics equivalent to those external accessories used in actual practice.
If for any reason, dimensions do not allow testing of a filter under standard test conditions, assembly
of two or more filters of the same type or model is permitted, provided no leaks occur in the resulting
filter. The operating conditions of such accessory equipment shall be recorded.
9.2 Initial pressure drop
The initial pressure drop is measured at the test air flow before wet equilibrium pre-treatment.
According to ISO 16890-2:2022, Annex B, all pressure loss measurements should be corrected to a
reference air density of 1,20 kg/m , which corresponds to standard air conditions: temperature 20 °C,
barometric pressure 101 325 kPa, relative humidity 50 %. However, as long as the air density is between
3 3
1,16 kg/m and 1,24 kg/m , no corrections need to be made.
9.3 Test procedure for water endurance performance of filter elements
9.3.1 General
The test device shall be tested at its nominal air volume flow rate for which the device has been specified
by the manufacturer.
If the rated air flow is not specified by manufacturer, the test air flow rate is established with the test
client. The recommended test air flow rates are the following:
— for static filter: 4 250 m /h;
— for single cylindrical cartridge: 1 000 m /h;
— for cylindrical plus cylindrical (conical) combined cartridges: 2 500 m /h.
Carry out wet equilibrium pre-treatment in a set time before water spray. The relative humidity of
suction air through the tested filter shall exceed 95 %. Start water fog test after wet equilibrium pre-
treatment.
For the test rigs without wet equilibrium device, pre-treatment can be omitted if approved by the test
client, but an interpretation shall be noted in the test report. The brief test rig and test procedures are
specified in Annex C.
The water fog used shall meet the requirements of 7.2. Discontinuous air supply and water fog can
change the water endurance performance of the filter to be tested. Once the test starts, the air supply
and water fog spray process shall not be stopped until the end of the test.
9.3.2 Wet equilibrium pre-treatment
Adjust the humidifying device to increase the humidity at the test air flow rate. Carry out wet equilibrium
pre-treatment and start timing when the relative humidity of the air upstream and downstream of the
tested filter exceeds 95 %.
The time of wet equilibrium pre-treatment is 60 min and the relative humidity of the air in the test duct
shall not be less than 95 % during the test.
ISO 29461-2:2022(E)
The pressure drop is recorded at the beginning, end, and every 15 min during the test. If the pressure
drop varies significantly, increase records to achieve a smooth curve of the pressure drop as the
function of time.
9.3.3 Water fog test
The water fog test shall be carried out immediately after wet equilibrium pre-treatment.
Increase the water fog mass by the water spray device based on saturated wet air and carry out the
water fog test at a saturated air loading with water fog at concentration of c under the test air flow
wm
rate. The medium in the test duct is a gas-liquid two-phase flow of saturated air and water fog. A water
fog concentration should be 6,0 g/m .
The pressure drop change during the test time is measured and recorded. The record interval shall not
exceed 5 min and corresponding pressure drop increases shall not exceed 20 Pa. For a test filter with a
fast-increasing pressure drop, more recordings are needed.
Stop the water fog test after the predetermined time or predefined pressure drop are reached. The final
test pressure drop value can be set by the test client. The water spray time should be 180 min and the
final test pressure drop should be 1 000 Pa. Then stop the test, whichever comes first and record the
data.
9.4 Water penetration ratio
Collect the water accumulated in the downstream of tested filter and record the water penetration in
accordance with Annex D.
For the evaluation of a filter water leakage, see Annex E.
10 Test report
10.1 General
The test report shall include at least the following items:
— general interpretation of test reports (see 10.2);
— type of water spray device;
— description of the test method;
— summaries of test results (see 10.3);
— data and results of air flow rate and pressure drop measurements (see 10.4).
Test results shall be reported using the test report format used in this document. Annex F gives
examples of the test reporting format. Exact formats are not requested but the report shall include the
items shown. The legend of each table and graph should include the following:
— type of filter;
— number of this document, i.e. ISO 29461-2:2022;
— test number;
— test air flow rate.
ISO 29461-2:2022(E)
10.2 Interpretation of test reports
A brief digest shall be included in the test reports. The interpretation shall be included after the issued
report and shall be a one-page addition.
A brief review of the test procedures is provided to explain ISO procedures. It is intended to assist in
understanding and interpreting the results in the test reports/summaries.
The environments and particle matters are various in different locations. The water fog endurance
performance in the test cannot be used to quantitatively evaluate the real-life behaviour of filters.
The test results can be used as a comparison and classification of filter performance, but the real-life
performance of the filter depends on actual site environment conditions.
10.3 Summaries of test results
Summaries of the performance report shall include the following items:
a) general:
1) testing organization;
2) date of test;
3) name of test operator;
4) report number;
5) test client;
6) device delivered by;
7) device receiving date;
b) manufacturer’s data of the tested device:
1) description of the device;
2) type, identification and marking;
3) manufacturer;
4) physical description of construction;
5) dimensions;
6) type of media;
7) the pictures of ra
...

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記事のタイトル:SIST EN ISO 29461-2:2022 - 回転機械用のエアインテークフィルターシステム - 試験方法 - 第2部:霧環境および霧環境でのフィルターエレメント耐久性試験(ISO 29461-2:2022) 記事の内容:この規格は、定置型ガスタービン、圧縮機、その他の定置型内燃機関などの回転機械に使用される空気吸入フィルターシステムのためのエアフィルターエレメントの耐水性能を決定するための一般的な要件、試験装置および設備、資格、試験材料、試験手順、報告を規定しています。この規格は特に、空気フィルターに適用されます。

기사 제목: SIST EN ISO 29461-2:2022 - 회전 기계용 공기 흡입 필터 시스템 - 시험 방법 - 제2부: 안개 및 미스트 환경에서의 필터 요소 내구성 시험 (ISO 29461-2:2022) 기사 내용: 이 표준은 회전 기계용 공기 흡입 필터 시스템에 사용되는 공기 필터 요소의 내수성 성능을 결정하기 위한 일반 요구 사항, 시험 시스템 및 장비, 자격, 시험 재료, 시험 절차 및 보고서를 명시합니다. 이 표준은 정지 가스 터빈, 압축기 및 기타 정지 내연기관과 같은 회전 기계에 사용되는 공기 필터에 특히 적용됩니다.

The article is about a new standard, SIST EN ISO 29461-2:2022, which focuses on the testing methods used to evaluate the endurance and performance of air filter elements used in air intake filtration systems for rotary machinery. This standard lays out the general requirements, test rig and equipment, qualification, test materials, test procedure, and report for determining the water endurance performance of these filter elements. The standard specifically applies to air filters used in stationary gas turbines, compressors, and other stationary internal combustion engines.

記事のタイトル:SIST EN ISO 29461-2:2022 - ロータリーマシン用エアインテークフィルターシステム - テスト方法 - 第2部:霧環境およびミスト環境でのフィルターエレメントの耐久性試験(ISO 29461-2:2022) 記事の内容:この基準は、主に静止ガスタービン、コンプレッサー、および他の静止内燃機関などのロータリーマシンのエアインテークフィルトレーションシステムで使用されるエアフィルターエレメントの耐水性能を決定するための一般的な要件、テストリグおよび装置、認証、テスト材料、テスト手順、およびレポートを規定しています。

기사 제목: SIST EN ISO 29461-2:2022 - 로터리 기계용 공기흡입 필터 시스템 - 시험 방법 - 제2부: 안개 및 미스트 환경에서 필터 요소 내구성 시험 (ISO 29461-2:2022) 기사 내용: 이 표준은 주로 정지형 가스 터빈, 압축기 및 기타 정지형 내연기관과 같은 로터리 기계의 공기 흡입 여과 시스템에 사용되는 공기 필터 요소의 내수성 성능을 결정하기 위한 일반 요구 사항, 시험 시험장치와 장비, 자격, 시험 재료, 시험 절차 및 보고서를 명시합니다.

The article discusses a new standard, SIST EN ISO 29461-2:2022, which focuses on air intake filter systems for rotary machinery. Specifically, it provides test methods for determining the endurance of filter elements in fog and mist environments. The standard covers various aspects, including general requirements, test rig and equipment, qualification, test materials, test procedures, and reporting. This standard is applicable to air filters used in air intake filtration systems for rotary machinery like stationary gas turbines, compressors, and stationary internal combustion engines.