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BS EN 12514:2020

$256.21

Components for supply systems for consuming units with liquid fuels

Published By Publication Date Number of Pages
BSI 2020 224
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PDF Pages PDF Title
2 undefined
11 1 Scope
12 2 Normative references
17 3 Terms, definitions, symbols and abbreviated terms
3.1 Terms and definitions
3.1.1 General
19 3.1.2 Components
23 3.1.3 Pipeline
24 3.1.4 Control and safety devices for feed pumps
3.1.4.1 Control devices for feed pumps
25 3.1.4.2 Safety devices for feed pumps
26 3.1.5 Supply systems
27 3.1.6 Pressure related terms
29 3.1.7 Temperature related terms
3.1.8 Flow related terms
30 3.1.9 Other terms
32 3.2 Symbols and abbreviated terms
33 4 Characteristics
4.1 General
4.2 Reaction to fire
4.3 Tightness in case of fire
4.4 Crushing strength
34 4.5 Internal pressure strength
4.5.1 Characteristics for pressurised systems
4.5.1.1 General
4.5.1.2 Type Testing
35 4.5.1.3 Factory production control
4.5.2 Characteristics for negative pressurised systems
4.6 External pressure strength
4.7 Longitudinal bending strength
4.8 Maximum load for admissible deformation
36 4.9 Dimensional Tolerance
4.10 Impact resistance
4.11 Electrostatic behaviour
4.12 Tightness
4.12.1 External tightness
4.12.1.1 General
37 4.12.1.2 Type testing
4.12.1.3 Factory production control
4.12.2 Internal tightness
4.13 Permeability
38 4.14 Effectiveness of safety devices
4.14.1 Control and safety devices for feed pumps
4.14.1.1 General
4.14.1.2 Control device
39 4.14.1.3 Safety device
4.14.2 Pressure compensating device
40 4.14.3 Anti-siphon safety device
4.14.3.1 General
41 4.14.3.2 Mechanical anti-siphon safety device
42 4.14.3.3 Electro-mechanical anti-siphon safety device
43 4.14.4 Remote acting fire safety valve
4.14.5 Safety shut-off device
4.15 Release of dangerous substances
4.16 Noise level
44 4.17 Durability)
4.17.1 Durability against chemical attack
4.17.1.1 Resistance to liquid fuels
4.17.1.2 Material
46 4.17.2 Durability against external corrosion)
4.17.3 Durability in case of extended temperatures
47 4.17.4 Durability against ultraviolet light
4.17.5 Durability against nominal lifetime operation
4.17.5.1 General
4.17.5.2 Fitness-for-use test
51 4.17.6 Resistance to humidity
5 Testing, assessment and sampling methods
5.1 General tests
5.1.1 General
5.1.2 Visual inspection
5.1.3 Dimensional test
5.2 Reaction to fire
52 5.3 Tightness in case of fire
5.4 Crushing strength
5.4.1 Purpose of chrushing strength test for pipeline connections
5.4.2 Test method
5.4.2.1 Procedure
5.4.2.2 Test pressure
5.4.2.3 Test duration
5.5 Internal pressure strength
5.5.1 Pressure test
5.5.1.1 General
53 5.5.1.2 Pressure strength test for metallic material
54 5.5.1.3 Pressure strength test for non-metallic materials
5.5.1.4 Dynamic strength test for non-metallic materials
55 5.5.2 Vacuum test
5.5.2.1 Test purpose
5.5.2.2 Test procedure
5.5.2.3 Test pressure
5.5.2.4 Test duration
56 5.6 Testing of external pressure strength (Flood resistance)
5.6.1 Test purpose
5.6.2 Test procedure
5.6.3 Test pressure
5.6.4 Test duration
5.7 Longitudinal bending strength
5.8 Maximum load for admissible deformation
5.9 Dimensional Tolerance
5.10 Impact resistance
5.11 Electrostatic behaviour
5.12 Tightness
5.12.1 General
57 5.12.2 External tightness test
5.12.2.1 Type testing
5.12.2.2 Factory production control
59 5.12.2.3 External tightness test of the service tank
5.12.2.4 External tightness test of the withdrawal device
5.12.3 Internal tightness test
5.12.3.1 Test purpose
60 5.12.3.2 Test procedure
5.12.3.3 Test pressure
5.12.3.4 Test duration
5.13 Permeability test
5.14 Effectiveness of safety devices
5.14.1 Control and safety devices for feed pumps
5.14.1.1 General
5.14.1.2 Control device
61 5.14.1.3 Safety devices
62 5.14.2 Pressure compensating device
5.14.2.1 Type Testing
63 5.14.2.2 Factory production control
5.14.3 Anti-siphon safety device
5.14.3.1 General
5.14.3.2 Mechanical anti-siphon safety device
66 5.14.3.3 Electro-mechanical anti-siphon safety device
67 5.14.4 Remote acting fire safety valve
5.14.4.1 General
69 5.14.4.2 Temperature sensing and manual reset test
5.14.4.3 Safety shut-off device closing time test
5.14.4.4 Fail safe test
5.14.5 Safety shut-off device
5.15 Release of dangerous substances
5.16 Noise level
5.16.1 Test purpose
5.16.2 Test procedure
70 5.17 Durability
5.17.1 Durability against chemical attack
5.17.1.1 Resistance to liquid fuels
5.17.1.2 Material
73 5.17.2 Durability against external corrosion
5.17.3 Durability in case of extended temperatures
5.17.4 Durability against ultraviolet light
5.17.5 Durability against nominal lifetime operation
5.17.5.1 General
5.17.5.2 Fitness-for-use test
79 5.17.6 Resistance to humidity
5.18 Additional requirements
5.18.1 Construction requirements
80 5.18.2 Maximum/minimum allowable temperature
5.18.2.1 General maximum/minimum allowable temperature
5.18.2.2 Different maximum/minimum allowable temperature
5.18.3 Flow resistance
5.18.3.1 General
5.18.3.2 Feed pump
5.18.3.3 Control and safety device for feed pumps
81 5.18.3.4 Service tank
5.18.3.5 Service vessel
5.18.3.6 Isolating valve
5.18.3.7 Quick-acting valve
5.18.3.8 Switch-over valve
5.18.3.9 Forced switch-over valve
5.18.3.10 Check valve
5.18.3.11 Pressure compensating device
5.18.3.12 Discharge valve
5.18.3.13 Pressure reducer
5.18.3.14 Filter
82 5.18.3.15 Meter
5.18.3.16 De-aerator
5.18.3.17 Anti-siphon safety device
5.18.3.18 Insulating device
5.18.3.19 Pressure gauge
5.18.3.20 Vapour/air separator
5.18.3.21 Pressure control path
83 5.18.3.22 Pressure retaining device
5.18.3.23 Remote acting fire safety valve
5.18.3.24 Pipe
5.18.3.25 Pipeline connections
5.18.3.26 Combined component
5.18.3.27 Withdrawal device
5.18.4 Environmental considerations
5.18.5 Electrical safety
5.18.6 Instruction for installation, operation and maintenance
5.19 Functional requirements
5.19.1 Feed pump
5.19.2 Service tank
5.19.2.1 Maximum filling height
84 5.19.2.2 Temperature control device
5.19.3 Service vessel
5.19.4 Isolating valve
5.19.5 Quick-acting valve
5.19.6 Switch-over valve
5.19.7 Forced switch-over valve
5.19.8 Check valve
5.19.9 Discharge valve
5.19.9.1 General
5.19.9.2 Type testing
85 5.19.9.3 Factory production control
5.19.9.4 Adjustable discharge valve
86 5.19.10 Pressure reducer
5.19.10.1 Design requirements for pressure reducers
5.19.10.2 Functional tests
88 5.19.11 Filter
5.19.11.1 General
5.19.11.2 Filter for single-pipe system with return flow
5.19.11.3 Filter for two-pipe systems
5.19.11.4 Filter element
89 5.19.12 Meter
5.19.13 De-aerator
5.19.13.1 General
5.19.13.2 Differential pressure
5.19.13.3 Manual venting device
5.19.13.4 Venting capacity
91 5.19.14 Insulating device
5.19.15 Pressure gauge
5.19.16 Vapour/air separator
5.19.17 Pressure control path
92 5.19.18 Pressure retaining device
5.19.18.1 Type testing
93 5.19.18.2 Factory production control
5.19.19 Pipe
5.19.19.1 General
5.19.19.2 Rigid metallic pipe
5.19.19.3 Non-metallic pipe
5.19.19.4 Hose
5.19.20 Type testing for pipeline connections
5.19.20.1 Repeated assembly test
5.19.20.2 Over tightening test
94 5.19.20.3 Vibration test
5.19.20.4 Testing for axial tensile strength
95 5.19.21 Combined component
5.19.22 Withdrawal device
6 Assessment and verification of constancy of performance (AVCP)
6.1 General
6.2 Type testing
6.2.1 General
96 6.2.2 Test samples, testing and compliance criteria
130 6.2.3 Test reports
6.2.4 Shared other party results
131 6.2.5 Cascading determination of the product type results
132 6.3 Factory production control (FPC)
6.3.1 General
6.3.2 Requirements
6.3.2.1 General
133 6.3.2.2 Equipment
134 6.3.2.3 Raw materials and components
6.3.2.4 Traceability and marking
6.3.2.5 Controls during manufacturing process
6.3.2.6 Product testing and evaluation
6.3.2.7 Non-complying products
135 6.3.2.8 Corrective action
6.3.2.9 Handling, storage and packaging
6.3.3 Product specific requirements
6.3.4 Initial inspection of factory and of FPC
136 6.3.5 Procedure for modifications
6.3.6 One-off products, pre-production products (e.g. prototypes) and products produced in very low quantity
137 7 Marking, labelling and packaging
7.1 General
7.2 Marking
139 7.3 Packaging
8 Additional and functional requirements
8.1 Additional requirements
8.1.1 Construction requirements
8.1.2 Maximum/minimum allowable temperature
8.1.2.1 General maximum/minimum allowable temperature
140 8.1.2.2 Different maximum/minimum allowable temperature
8.1.3 Flow resistance
8.1.3.1 General
8.1.3.2 Feed pump
141 8.1.3.3 Control and safety device for feed pumps
8.1.3.4 Service tank
8.1.3.5 Service vessel
8.1.3.6 Isolating valve
8.1.3.7 Quick-acting valve
8.1.3.8 Switch-over valve
8.1.3.9 Forced switch-over valve
8.1.3.10 Check valve
8.1.3.11 Pressure compensating device
8.1.3.12 Discharge valve
8.1.3.13 Pressure reducer
8.1.3.14 Filter
142 8.1.3.15 Meter
8.1.3.16 De-aerator
8.1.3.17 Anti-siphon safety device
8.1.3.18 Insulating device
8.1.3.19 Pressure gauge
8.1.3.20 Vapour/air separator
8.1.3.21 Pressure control path
8.1.3.22 Pressure retaining device
8.1.3.23 Remote acting fire safety valve
8.1.3.24 Pipe
8.1.3.25 Pipeline connections
8.1.3.26 Combined component
8.1.3.27 Withdrawal device
8.1.4 Environmental considerations
143 8.1.5 Electrical safety
8.1.6 Instruction for installation, operation and maintenance
8.2 Functional requirements
8.2.1 Feed pump
8.2.1.1 Requirements
145 8.2.1.2 Machine safety requirements and/or protective measures
8.2.2 Service tank
8.2.2.1 Maximum filling height
8.2.2.2 Temperature control device
146 8.2.2.3 Service tank for intermediate storage
8.2.3 Service vessel
8.2.4 Isolating valve
8.2.5 Quick-acting valve
8.2.6 Switch-over valve
8.2.7 Forced switch-over valve
8.2.8 Check valve
147 8.2.9 Discharge valve
8.2.9.1 General
8.2.9.2 Type testing
148 8.2.9.3 Factory production control
8.2.10 Pressure reducer
8.2.10.1 Design requirements for pressure reducers
149 8.2.10.2 Functional and constructional characteristics of pressure reducers
150 8.2.10.3 Tests
8.2.11 Filter
8.2.11.1 General
8.2.11.2 Filter for single-pipe system with return flow
151 8.2.11.3 Filter for two-pipe system
8.2.11.4 Filter element
152 8.2.12 Meter
8.2.12.1 General
8.2.12.2 Meters for recording the supply
8.2.13 De-aerator
8.2.13.1 General
8.2.13.2 Differential pressure
8.2.13.3 Manual venting device
153 8.2.13.4 Venting capacity
8.2.14 Insulating device
8.2.15 Pressure gauge
8.2.16 Vapour/air separator
154 8.2.17 Pressure control path
8.2.18 Pressure retaining device
8.2.19 Pipe
8.2.19.1 General
8.2.19.2 Rigid metallic pipe
155 8.2.19.3 Non-metallic pipe
8.2.19.4 Hose
8.2.20 Pipeline connections
8.2.20.1 General
156 8.2.20.2 Types of pipeline connections
158 8.2.20.3 Type testing
159 8.2.21 Combined component
8.2.22 Withdrawal device
161 Annex A (informative)National technical documents for liquid fuels
A.1 General
A.2 Category A: Liquid fuels derived from petroleum refining processes
162 A.3 Category B: Liquid fuels from renewable resources
A.4 Category C: Combinations of category A and B
163 Annex B (normative)Metallic materials for components and parts
180 Annex C (normative)Instructions for installation, operation and maintenance
C.1 General
C.2 Contents
183 Annex D (informative)Examples for the installation of the components in supply systems
192 Annex E (informative)Environmental aspects
193 Annex F (informative)Environmental checklist
195 Annex G (informative)Vocabulary
199 Annex H (normative)Machine safety requirements and/or protective measures
H.1 General
H.2 List of significant hazards
200 H.3 Safety requirements and /or protective measures
H.3.1 General
H.3.2 Mechanical safety, stability and control devices
202 Annex I (normative)Rigid metallic pipes within the scope of EN 12514
I.1 Rigid metallic pipes for above ground installations
I.1.1 General
I.1.2 Rigid metallic pipes from non-alloy and alloy steels
I.1.3 Pipes from stainless austenitic steels
I.1.4 Copper and copper alloy pipes
I.1.5 Aluminium pipes
I.2 Rigid metallic pipes for underground installations
203 Annex J (informative)Union nut G 3/8 with 60° internal cone as pipeline connection
204 Annex K (informative)Stud connectors with sealing ring
K.1 General
K.2 Stud end of stud connector
205 K.3 Sealing ring
K.3.1 Dimensions and designation
206 K.3.2 Materials
207 Annex L (informative)Compression fittings for components with G 3/8 internal thread
L.1 General
L.2 Materials
L.3 Design types
L.3.1 Design type G
209 L.3.2 Design type A
211 L.3.3 Design type O
213 Annex M (informative)Stud connectors with o-ring
M.1 General
M.2 Port
215 M.3 O-Ring
M.4 Material
216 Annex ZA (informative)Relationship between this European Standard and the essential requirements of EU Directive 2014/32/EU
BS EN 12514:2020
$256.21