ONORM EN 334 : JUN 2009
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
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GAS PRESSURE REGULATORS FOR INLET PRESSURES UP TO 100 BAR
11-01-2019
01-12-2013
Foreword
1 Scope
2 Normative references
3 Definitions and symbols
3.1 Terminology
3.1.1 Gas pressure regulator
3.1.2 Main components
3.1.3 Accessories
3.2 Control variables
3.2.1 Reference values
3.2.2 Variables in the controlling process
3.2.3 Possible values of all variables
3.2.4 Terms pertinent to the controlled variable
3.3 Operating features in stable conditions
3.3.1 Stable conditions
3.3.2 Performance curve
3.3.3 Hysteresis band
3.3.4 Family of performance curves
3.3.5 Features pertinent to accuracy
3.3.6 Features pertinent to lock-up behaviour
3.4 Further functional terminology
3.4.1 Pressures pertinent to design of gas
pressure regulator
3.4.2 Nominal pressure
3.4.3 Operating temperature range
4 Construction requirements
4.1 General requirements
4.1.1 Operational requirements
4.1.2 Gas pressure regulators with built-in
safety devices
4.1.3 End connections
4.1.4 Nominal pressures
4.1.5 Nominal sizes and face-to-face
dimensions
4.2 Materials
4.2.1 Chemical resistance requirements
4.2.2 Requirements for metallic materials
4.2.3 Requirements for elastomers (including
vulcanised rubbers)
4.3 Strength of housings
4.3.1 Regulator body
4.3.2 Other pressure containing parts
4.3.3 Minimum values of safety factors
5 Functional requirements
5.1 General
5.1.1 Mounting position
5.1.2 Sound emission
5.2 Tightness and sealing
5.2.1 External tightness
5.2.2 Internal sealing
5.3 Control classifications
5.3.1 Accuracy under stable conditions
5.3.2 Lock-up behaviour
5.3.3 Stable conditions
6 Gas pressure regulator sizing
6.1 Flow behaviour
6.2 Sizing equations for the calculation of
volumetric flow rates of a gas pressure
regulator with its control member in its
mechanically fully open position
6.2.1 Normal calculations
6.2.2 Practical calculations
6.2.3 Simplified calculations
6.3 Calculation of the maximum accuracy flow rate
6.4 Inherent flow characteristics
6.5 Calculation of volumetric flow rates for
partially open gas pressure regulators
7 Testing
7.1 Types of tests
7.1.1 General
7.1.2 Type test
7.1.3 Selection of test samples
7.1.4 Manufacturer's test
7.1.5 Surveillance
7.2 Test and verification methods
7.2.1 Dimensional check and visual
inspection
7.2.2 Materials check
7.2.3 Verification of the strength of the
pressure containing parts
7.2.4 Shell strength test
7.2.5 External tightness test
7.2.6 Functional tests
7.2.7 Final inspection
8 Documentation
8.1 Documentation related to the type test
8.1.1 Documentation required prior to the
type test
8.1.2 Test report
8.2 Documentation related to the manufacturer's tests
8.2.1 Documentation provided at the request
of the customer
8.2.2 Documentation provided with the regulator
8.3 Documentation related to surveillance
8.3.1 Documentation to be available for
surveillance
8.3.2 Surveillance report
9 Marking
9.1 General requirements
9.2 Markings for the various connections
9.3 Marking of built-in safety devices
Annex A (informative) Use of allowable pressure
Annex B (informative) Alternative methods for the determination
of the accuracy class, the lock-up
pressure class, the maximum accuracy
flow rate, the flow coefficients and the
verification of the hysteresis band
B.1 - General
B.2 - Test methods
B.2.1 - Direct acting gas pressure regulator
B.2.2 - Pilot controlled gas pressure regulators
B.3 - Determination of flow coefficients for larger
capacity regulators
Annex C (informative) Inspection certificate
Annex D (informative) Acceptance test
Annex E (informative) Conformity evaluation
E.1 - General
E.2 - Manufacturer's conformity evaluation
E.3 - Third party conformity evaluation
E.3.1 - Introduction
E.3.2 - Procedure
E.3.3 - Selection of test samples
E.4 - Issue of the certificate of conformity
Annex F (informative) Seat leakage
Annex G (informative) Order specification
G.1 - Minimum specifications
G.1.1 - Details of construction
G.1.2 - Dimensions
G.1.3 - Performance
G.2 - Optional specifications
Annex H (informative) A-deviations
Annex J (informative) Bibliography
Provides constructional and functional requirements, regulator sizing, testing, documentation and marking of gas pressure regulators used in the pressure regulating stations: - for inlet pressures up to 100 bar and nominal diameters up to DN 400; - for an operating temperature range from -20 degree C to +60 degree C, which operate with fuel gases of the 1st and 2nd family in accordance with EN 437 in transmission and distribution networks and also in commercial and industrial installations.
DocumentType |
Standard
|
PublisherName |
Osterreichisches Normungsinstitut/Austrian Standards
|
Status |
Withdrawn
|
SupersededBy |
Standards | Relationship |
SN EN 334 : 2005 + A1 2009 | Identical |
DIN EN 334:2016-05 (Draft) | Identical |
I.S. EN 334:2005 | Identical |
NF EN 334 : 2005 + A1 2009 | Identical |
NBN EN 334 : 2005 + A1 2009 | Identical |
BS EN 334 : 2005 | Identical |
EN 334:2005+A1:2009 | Identical |
UNI EN 334 : 2009 | Identical |
NEN EN 334 : 2005 + A1 2009 | Identical |
NS EN 334 : 2005 + A1 2009 | Identical |
UNE-EN 334:2005 | Identical |
EN 60534-8-3:2011 | Industrial-process control valves - Part 8-3: Noise considerations - Control valve aerodynamic noise prediction method |
EN 10226-2:2005 | Pipe threads where pressure tight joints are made on the threads - Part 2: Taper external threads and taper internal threads - Dimensions, tolerances and designation |
EN 60534-1:2005 | Industrial-process control valves - Part 1: Control valve terminology and general considerations |
EN ISO 15613:2004 | Specification and qualification of welding procedures for metallic materials - Qualification based on pre-production welding test (ISO 15613:2004) |
EN 1349:2009 | Industrial process control valves |
EN ISO 15612:2004 | Specification and qualification of welding procedures for metallic materials - Qualification by adoption of a standard welding procedure (ISO 15612:2004) |
EN 1759-1:2004 | Flanges and their joint - Circular flanges for pipes, valves, fittings and accessories, Class designated - Part 1: Steel flanges, NPS 1/2 to 24 |
EN 1759-4:2003 | Flanges and their joint - Circular flanges for pipes, valves, fittings and accessories, class designated - Part 4: Aluminium alloy flanges |
EN 12516-1:2014 | Industrial valves - Shell design strength - Part 1: Tabulation method for steel valve shells |
EN ISO 9606-4:1999 | Approval testing of welders - Fusion welding - Part 4: Nickel and nickel alloys (ISO 9606-4:1999) |
EN 12516-4:2014 | Industrial valves - Shell design strength - Part 4: Calculation method for valve shells manufactured in metallic materials other than steel |
EN 473:2008 | Non-destructive testing - Qualification and certification of NDT personnel - General principles |
EN 10045-1 : 1990 | METALLIC MATERIALS - CHARPY IMPACT TEST - PART 1: TEST METHOD |
EN ISO 15611:2003 | Specification and qualification of welding procedures for metallic materials - Qualification based on previous welding experience (ISO 15611:2003) |
EN 13445-4 : 2014 COR 2017 | UNFIRED PRESSURE VESSELS - PART 4: FABRICATION |
EN 1092-4:2002 | Flanges and their joints - Circular flanges for pipes, valves, fittings and accessories, PN designated - Part 4: Aluminium alloy flanges |
ISO 5752:1982 | Metal valves for use in flanged pipe systems Face-to-face and centre-to-face dimensions |
EN ISO 15614-2:2005 | Specification and qualification of welding procedures for metallic materials - Welding procedure test - Part 2: Arc welding of aluminium and its alloys (ISO 15614-2:2005) |
EN ISO 9606-2:2004 | Qualification test of welders - Fusion welding - Part 2: Aluminium and aluminium alloys (ISO 9606-2:2004) |
EN 60534-2-1:2011/AC:2015 | INDUSTRIAL-PROCESS CONTROL VALVES - PART 2-1: FLOW CAPACITY - SIZING EQUATIONS FOR FLUID FLOW UNDER INSTALLED CONDITIONS (IEC 60534-2-1:2011) |
EN 10204:2004 | Metallic products - Types of inspection documents |
EN 60534-2-3:2016 | Industrial-process control valves - Part 2-3: Flow capacity - Test procedures |
EN ISO 15609-1:2004 | Specification and qualification of welding procedures for metallic materials - Welding procedure specification - Part 1: Arc welding (ISO 15609-1:2004) |
ISO 3419:1981 | Non-alloy and alloy steel butt-welding fittings |
MSS SP 55 : 2011 | QUALITY STANDARD FOR STEEL CASTINGS FOR VALVES, FLANGES, FITTINGS, AND OTHER PIPING COMPONENTS - VISUAL METHOD FOR EVALUATION OF SURFACE IRREGULARITIES |
EN 12516-2:2014 | Industrial valves - Shell design strength - Part 2: Calculation method for steel valve shells |
EN ISO 15610:2003 | Specification and qualification of welding procedures for metallic materials - Qualification based on tested welding consumables (ISO 15610:2003) |
EN 1418:1997 | Welding personnel - Approval testing of welding operators for fusion welding and resistance weld setters for fully mechanized and automatic welding of metallic materials |
EN 1092-2:1997 | Flanges and their joints - Circular flanges for pipes, valves, fittings and accessories, PN designated - Part 2: Cast iron flanges |
EN 970:1997 | Non-destructive examination of fusion welds - Visual examination |
EN 10226-1:2004 | Pipe threads where pressure tight joints are made on the threads - Part 1: Taper external threads and parallel internal threads - Dimensions, tolerances and designation |
EN ISO 15607:2003 | Specification and qualification of welding procedures for metallic materials - General rules (ISO 15607:2003) |
EN ISO 9606-3:1999 | Approval testing of welders - Fusion welding - Part 3: Copper and copper alloys (ISO 9606-3:1999) |
EN ISO 175:2010 | Plastics - Methods of test for the determination of the effects of immersion in liquid chemicals (ISO 175:2010) |
ISO 1817:2015 | Rubber, vulcanized or thermoplastic Determination of the effect of liquids |
EN 287-1:2011 | Qualification test of welders - Fusion welding - Part 1: Steels |
EN 12186:2014 | Gas infrastructure - Gas pressure regulating stations for transmission and distribution - Functional requirements |
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