BS MA 18-1973 Specification for salt water piping systems in ships《船舶用咸水管路系统规范》.pdf
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1、BRITISH STANDARD MARINE SERIES CONFIRMED JANUARY 1980 BS MA 18:1973 Incorporating Amendment No.1 Specification for Salt water piping systems in ships UDC 629.12.061:621.64/.69BSMA18:1973 This BritishStandard, having been approved by the Ship building for continuous flow 32 Figure 2 Swept saddle type
2、 branch, welded; continuous, intermittent and no-flow 33 Figure 3 Saddle branch, welded; continuous, intermittent and no-flow 33 Figure 4 Welded stub branch; continuous, intermittent and no-flow 34 Figure 5 Set-on branch pipes for2.5mm wall thickness and above; intermittent and no-flow 34 Figure 6 S
3、et-on branches and bosses, welded; no-flow 35 Figure 7 Swept saddle type branch, brazed; continuous, intermittent and no-flow 36 Figure 8 Saddle branch, brazed; continuous, intermittent and no-flow 36 Figure 9 Set-on boss, brazed; no-flow 37 Figure 10 Set-in socket boss (Scotch type); no-flow 37 Fig
4、ure 11a Cast bulkhead pieces 38 Figure 11b Fabricated copper alloy/steel bulkhead pieces 39 Figure 11c Fabricated copper alloy/steel bulkhead pieces. Methods of attaching components of types shown in Figure 11b 40 Figure 11d Galvanized fabricated steel bulkhead pieces 41 Figure 11e Grey and ductile
5、iron bulkhead pieces 42 Figure 12 Recommended steel flange preparation for welding to copper-nickel pipe 43 Figure 13 Typical procedure for welding steel flange to copper-nickel pipe 43 Figure 14 Gussetted bend 44 Figure 15 Setting up correct flows in salt water circulating systems 44 Figure 16 Pipe
6、 friction coefficient 45 Figure 17 Friction loss in “smooth” (copper alloy) pipes (water20 C) 46 Figure 18 Temperature correction factor for loss in “smooth” (copper alloy) pipes 47 Figure 19 Friction loss in new steel pipes (water20 C) 48 Figure 20 Temperature correction factor for loss in new stee
7、l pipes 49 Figure 21 Dynamic pressure of salt water 50 Figure 22 Excess loss coefficients for bends 51 Figure 23 Loss coefficient for flow in a45 branch (dividingflow0.352u da/d u 1.00) 52 Figure 24 Loss coefficient for flow in a45 branch (uniting flow0.352u da/d u 1.00) 53 Figure 25 Loss coefficien
8、t for flow in equi-diameter right-angle branches 54 Figure 26 Loss coefficient for sudden enlargement and contraction 55 Figure 27 Loss coefficient for valves 56 Figure 28 Comparison of pump and system characteristics 57 Figure 29 Vapour pressure of water 58 Figure 30 Typical sea water circulating s
9、ystem 59 Figure 31 Isometric view of piping layout (for Appendix A example calculation only) 60 Table 1 Copper alloy components 3 Table 2 Preferred sizes for salt water pipelines 8BSMA18:1973 BSI 05-2000 iii Page Table 3 Arc welding processes 11 Table 4 Filler metals for arc welding copper alloy pip
10、elines 15 Table 5 Steel pipe sizes 16 Table 6 Dimensions of grey and ductile iron pipes 17 Table 7 Recommended minimum bending radii for steel pipes 18 Table 8 Filler metals and electrodes; steel 18 Table 9 The galvanic series in sea water 30BSMA18:1973 iv BSI 05-2000 Foreword This BritishStandard h
11、as been prepared under the authority of the Shipbuilding and Marine Industry Standards Committee. Recommendations and requirements are given in this standard with the object of improving the service life of salt water systems in ships. Failure of the component parts of salt water piping systems may
12、occur as a result of corrosion/erosion, otherwise known as impingement attack, arising from excessive turbulence. Such a condition may be brought about by poor design and/or poor workmanship, or the use of too high a nominal water speed. Excessive water speed is a major factor and may arise as a res
13、ult of poor design or of misuse of the system. Failure may also occur by pitting resulting from deposit attack, and cracking due to stress corrosion, or by general wastage in the case of ferrous systems. Attention should therefore be given to the design, fabrication and installation of systems to en
14、sure minimum turbulence. In particular, abrupt changes in the direction of flow, mismatched pipe bores, tube bore protrusions and other restrictions of flow should be avoided. All pressures in this standard are in bar 1)(gauge) unless otherwise stated. This standard makes reference to the following
15、BritishStandards: BS309, Whiteheart malleable iron castings. BS310, Blackheart malleable iron castings. BS449, Welding terms and symbols. BS639, Covered electrodes for the manual metal-arc welding of mild steel and medium-tensile steel. BS729, Hot dip galvanized coatings on iron and steel articles.
16、BS864, Capillary and compression fittings of copper and copper alloy for use with copper tube complying with BS1386 and BS3931Part2:Metric units. BS970, Wrought steels in the form of blooms, billets, bars and forgings. Part1: Carbon steels 1) ; Part2: Direct hardening alloy steels including alloy st
17、eels capable of surface hardening by nitriding; Part3: Steels for case hardening; Part4: Stainless, heat resisting and valve steels; Part5: Carbon and alloy spring steels for the manufacture of hot formed springs. BS1387, Steel tubes and tubulars suitable for screwing to BS21 pipe threads. BS1400, C
18、opper alloy ingots and copper and copper alloy castings. BS1452, Grey iron castings. BS1453, Filler rods and wires for gas welding. BS1504-6, Steels for use in the chemical, petroleum and allied industries. BS1504, Castings. BS1560, Steel pipes flanges, nominal size “ in to24in, for the petroleum in
19、dustry Part 2:Metric dimensions. BS1640, Steel butt-welding pipe fittings for the petroleum industry Part3:Wrought carbon and ferritic alloy steel fittings. BS1723, Brazing. BS1740, Wrought steel pipe fittings (screwed BSP thread). BS1845, Filler metals for brazing. BS1965, Butt-welding pipe fitting
20、s for pressure purposes Part 1: Carbon steel. 1) In course of preparationBSMA18:1973 BSI 05-2000 v BS1973, Polythene pipe (Type32) for general purposes, including chemical and food industry uses. BS2051, Tube and pipe fittings for engineering purposes Part 1:Copper and copper alloy capillary and com
21、pression tube fittings (for use with fractional o.d. sizes of tubes). BS2579, Solid drawn copper alloy tubes for the manufacture of screwed ferrules, and copper alloy screwed ferrules for condenser, evaporator, heater and cooler tubes. BS2591, Glossary for valves and valve parts (for fluids). Part 1
22、: Screw-down stop, check and gate valves; Part 2: Safety valves and relief valves; Part 3: Plug valves and cocks; Part 4: Butterfly valves; Part 5: Ball valves. BS2640, Class II oxy-acetylene welding of steel pipelines and pipe assemblies for carrying fluids. BS2789, Iron castings with spheroidal or
23、 nodular graphite. BS2815, Compressed asbestos fibre jointing. BS2870, Rolled copper and copper alloys. Sheet, strip and foil. BS2871, Copper and copper alloys. Tube. Part 1: Copper tubes for water, gas and sanitation; Part 2: Tubes for general purposes. BS2872, Copper and copper alloys. Forging sto
24、ck and forgings. BS2873, Copper and copper alloys. Wire. BS2874, Copper and copper alloys. Rods and sections (other than forging stock). BS2875, Copper and copper alloys. Plate. BS2901, Filler rods and wires for gas-shielded arc welding. BS2971, Class II metal-arc welding of steel pipelines and pipe
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