BS 5306-5.2:1984
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
Code of practice for fire extinguishing installations and equipment on premises. Halon systems Halon 1211 total flooding systems
Hardcopy , PDF
25-08-2022
English
28-09-1984
Foreword
Committees responsible
Code of practice
0 Introduction
1 Scope
2 Definitions
3 Characteristics of Halon 1211
4 Planning
5 Contract arrangements
6 System design
7 System operation
8 Enclosure characteristics
9 System components
10 System design procedure
11 Maintenance
12 Safety
Appendices
A Deep-seated fires
B Examples of calculation of Halon 1211 quantity where
there is natural ventilation
C Examples of calculation of Halon 1211 quantity where
there is forced ventilation
D Example of design calculation for balanced system
E Example of design calculation for unbalanced system
Tables
1 Physical properties of Halon 1211
2 Quality of Halon 1211
3 Halon 1211 flame extinguishment concentrations
4 Halon 1211 inerting concentrations
5 Halon 1211 total flooding quantity
6 Pipes
7 Maximum pipework spans
8 Friction loss in screwed pipe fittings and valves
9 Friction loss in welded pipe elbows
10 Safety clearances to enable operation, inspection,
cleaning, repairs, painting and normal maintenance
work to be carried out
Figures
1 Isometric diagram of Halon 1211 pressurized to 25
bar at 21 deg C
2 Isometric diagram of Halon 1211 pressurized to 10.5
bar at 21 deg C
3 Pressure drop against mass flow rate for Halon 1211
in galvanized steel pipes
4 Mass flow rate per unit area against nozzle pressure
with Halon 1211/Nitrogen for nozzle type A
5 Mass flow rate per unit area against nozzle pressure
with Halon 1211/Nitrogen for nozzle type B
6 Type A nozzle
7 Type B nozzle
8 Example of balanced system
9 Example of Halon 1211 mass flow rate against
container pressure for balanced system
10 Example of unbalanced system
11 Example of Halon 1211 mass flow rate against
container pressure for unbalanced system
12 Label to be displayed at manual control
13 Label to be displayed at entrances to hazard
14 Extended mass flow rate of Halon 1211 to maintain
concentration in enclosures with openings
15 Initial amounts of Halon 1211 to produce a 2.5 %
(V/V) residual concentration in enclosures equipped
for mechanical mixing
16 Initial amounts of Halon 1211 to produce a 5 %
(V/V) residual concentration in enclosures equipped
for mechanical mixing
17 Initial amounts of Halon 1211 to produce a 7.5 %
(V/V) residual concentration in enclosures equipped
for mechanical mixing
18 Time required for interface between effluxing Halon
1211/air mixtures and influxing air to descend to
the centre of enclosures not equipped for mixing
Gives recommendations for the design and installation of Halon 1211 total flooding systems on premises.
Committee |
FSH/18
|
DevelopmentNote |
Supersedes 82/11026 DC. (08/2005) Reviewed and confirmed by BSI, October 2012. (09/2012)
|
DocumentType |
Standard
|
Pages |
44
|
PublisherName |
British Standards Institution
|
Status |
Withdrawn
|
This Section of this code gives recommendations for the design, installation, maintenance and safety of Halon 1211 total flooding fire extinguishing systems in buildings or plant.
Such a system consists of an installation designed to convey Halon 1211 from storage containers for the protection of particular plant or parts of the premises against possible fire risk. Such systems may be piped or otherwise connected.
This code provides factual data on the characteristics of Halon 1211 and the types of fire for which it is a suitable extinguishant.
The code does not cover the design of explosion suppression systems.
Two methods of operation, viz. manual and automatic, are described Advice is given on the selection of a system and on the operational method; also included are detailed recommendations on the design, maintenance and efficient operation of installations. Reference is also made to the part which Halon 1211 systems should play in general schemes of fire protection of premises, having regard to safety as well as efficiency.
NOTE 1. Unless otherwise stated, all pressures are gauge pressures (in bar) 1 bar = 105 N/m2 = 105 Pa.
NOTE 2. The titles of the publications referred to in this code are listed on the inside back cover.
03/637076 DC : DRAFT NOV 2003 | TELECOMMUNICATIONS EQUIPMENT AND TELECOMMUNICATIONS CABLING - SPECIFICATION FOR INSTALLATION, OPERATION AND MAINTENANCE |
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BS DD9999(2005) : 2005 | CODE OF PRACTICE FOR FIRE SAFETY IN THE DESIGN, CONSTRUCTION AND USE OF BUILDINGS |
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BS 7327-1:1990 | Small fixed fire extinguishers Specification for small fixed halon fire extinguishers |
BS 7083:1996 | Guide to the accommodation and operating environment for information technology (IT) equipment |
BS 5908:1980 | Code of practice for fire precautions in chemical plant |
BS 7273-2:1992 | Code of practice for the operation of fire protection measures Mechanical actuation of gaseous total flooding and local application extinguishing systems |
BS 5306-0:1986 | Fire extinguishing installations and equipment on premises Guide for the selection of installed systems and other fire equipment |
BS 5588-3:1983 | Fire precautions in the design, construction and use of buildings Code of practice for office buildings |
BS 5588-12:2004 | Fire precautions in the design, construction and use of buildings Managing fire safety |
BS 381C:1996 | Specification for colours for identification, coding and special purposes |
BS 476-4:1970 | Fire tests on building materials and structures Non-combustibility test for materials |
BS 1600-2:1970 | Specification for dimensions of steel pipe for the petroleum industry Metric units |
BS 2051-1:1973 | Tube and pipe fittings for engineering purposes Copper and copper alloys capillary and compression tube fittings for engineering purposes |
BS 1821:1982 | Specification for class I oxy-acetylene welding of ferritic steel pipework for carrying fluids |
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BS 1640-3:1968 | Specification for steel butt-welding pipe fittings for the petroleum industry Wrought carbon and ferritic alloy steel fittings. Metric units |
BS 3351:1971 | Specification for piping systems for petroleum refineries and petrochemical plants |
BS 5252:1976 | Framework for colour co-ordination for building purposes |
BS 1560-2:1970 | Circular flanges for pipes, valves and fittings (Class designated) Specification for steel pipe flanges (nominal sizes ½ in to 24 in). Metric dimensions |
BS 4366:1993 | Specification for industrial nitrogen |
BS 5045-2:1989 | Transportable gas containers Specification for steel containers of 0.5 L up to 450 L water capacity with welded seams |
BS 1387:1985 | Specification for screwed and socketed steel tubes and tubulars and for plain end steel tubes suitable for welding or for screwing to BS 21 pipe threads |
BS 5045-3:1984 | Transportable gas containers Specification for seamless aluminium alloy gas containers above 0.5 litre water capacity and up to 300 bar charged pressure at 15°C |
BS 3602-1:1987 | Specification for steel pipes and tubes for pressure purposes: carbon and carbon manganese steel with specified elevated temperature properties Specification for seamless and electric resistance welded including induction welded tubes |
BS 2871-2:1972 | Specification for copper and copper alloys. Tubes Tubes for general purposes |
BS 1740-1:1971 | Specification for wrought steel pipe fittings (screwed BS 21 R-series thread) Metric units |
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BS CP1013(1965) : LATEST | EARTHING |
BS 4547:1972 | Classification of fires |
ASME B16.9 : 2012 | FACTORY-MADE WROUGHT BUTTWELDING FITTINGS |
BS 162:1961 | Specification for electric power switchgear and associated apparatus |
BS 476-8:1972 | Fire tests on building materials and structures Test methods and criteria for the fire resistance of elements of building construction |
BS 4422-4:1975 | Glossary of terms associated with fire Fire protection equipment |
ASME B16.3 : 2016 | MALLEABLE IRON THREADED FITTINGS: CLASSES 150 AND 300 |
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