bollard requirement
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Bollard RequirementTRANSCRIPT
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MOORING EQUIPMENT
Recommended SWL, Load Position, Safety Factor and Test LoadFitting SWL Load Position
(Line Position)SafetyFactor
on Yield
TestLoad
Notes
Double Bollards Per ISO 3913“Single RopeMaximumLoading”
1.2 X Barrel Dia.(D) Above Base,max.
2.36 2 X SWL Scantling must be as perISO 3913.
Barrel loading when figure-of-eight belayed assumed tobe twice eye load.
SWL applies to figure-of-eight belaying.
Cruciform Bollards Single Type:2 X AboveLoad
Double Type:Same asabove
1.2 X Barrel Dia.(D) Above Base,max.
2.36 2 X SWL Scantling must be as perISO 3913.
Barrel Loading when figure-of-eight belayed assumed tobe twice eye load.
Closed Chocks MBL of oneline d/R = 1/4
IWRC WireRope with min.strand strengthif 1770 N/mm 2
Outboard –Horizontal: ±90O
Vertical: Up 30O
Down 90O
Inboard – Horizontal: ±90O
Vertical: ±30O
2.36 2 X SWL d = Rope DiameterR = Chock Surface Radius
If used for primary mooringline, MBL may be that ofactual associated mooringline.
Max. Horizontal Load = 2 XRope Load.
Pedestal Fairleads andRollers of Button-RollerChocks
0.55 MBL ofone line:
d/R = 1/4
IWRC WireRope with min.strand strengthof 1770 N/mm2
180O wrap at upperend of cylindricalor conical part ofthroat (at center ofroller if radiusthroat)
2.02 1.82 XSWL
(=MBL)
If used for primary mooringline, MBL may be that ofactual associated mooringline.
Total Load on fitting is equalto twice the line load.
Universal Fairlead 4-Roller Type
0.55 MBL ofone line:
d/R = 1/4
IWRC WireRope with min.strand strengthof 1770 N/mm2
Outboard –Horizontal: ±90O
Vertical: Up 30O
Down 90O
Inboard – Horizontal: ±30O
Vertical: ±15O
2.02 1.82 XSWL
MBL = MBL of actualmooring Line.
Inboard line leads maycorrespond to actual leads towinch drum.
Position of line in aperture tobe assumed such as toproduce max. stress in partinvestigated.
Assume highest position tocalculate stress in frame androller bearings; at mid-lengthof roller to calculate bendingin roller.
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BILLBOARD BACK TO CONTENT
MOORING EQUIPMENT
Recommended SWL, Load Position, Safety Factor and Test LoadFitting SWL Load Position
(Line Position)SafetyFactor
on Yield
TestLoad
Notes
Universal Fairlead5-Roller Type
0.55 MBL ofone line:
d/R = 1/4
IWRC WireRope with min.strand strengthof 1770 N/mm2
Outboard –Horizontal: ±90O
Vertical: Up 30O
Down 90O
Inboard – Horizontal: ±30O
Vertical: ±15O
2.02 1.82 XSWL
MBL = MBL of actual mooringLine.
Inboard line leads maycorrespond to actual leads towinch drum.
Position of line in aperture tobe assumed such as toproduce max. stress in partinvestigated.
Assume highest position tocalculate stress in frame androller bearings; at mid-lengthof roller to calculate bendingin roller.
Chain Stoppers orSmit Bracketsfor use at SPMs or forEmergency Towing(Ship over 20,000 DWT)
Up to 350,000DWT = 200 T
Over 350,000DWT = 250 T
In-line with fitting 1.50 SWL SWL to be marked on fitting.Two fittings required for allships over 150,000 DWT
Chain B.S. = 4315 KNTowing B.S. = 3970 KN
Mooring Winch Drum,Shafts, Bearings
MBL ofmooring line
Split Drums:On first layer.
Single Drums: First or top layer,whicheverproduces higheststress.
1.11 SWL Please refer standard winchsizes and rope B.S.
Mooring Winch Brakes,Frames andFoundations
MBL of mooingline
Split Drums:On first layer.
Single Drums: First or top layer,whicheverproduces higheststress.
1.50 SWL Per BS MA 93, Part 4.3.2.
Mooring Winch DriveComponents
Stall load Not applicable SeeRemark
See ISO3730 andsection 7
Safety factor + 1.11 based onstall load; or 2.5 based onrated load; whichever ishigher (per ISO 3730).
Mooring Lines Highest loadcalculated foradoptedstandardenvironmentalconditions
Not applicable Steel:1.82
Nylon:2.2
Synth:2.0
Testsample todestruction
confirmMBL
The safety factors for ropesquoted should only beapplied to primary mooringlines in combination with theSWL defined.
Tails for Mooring Lines As above Not applicable Polyester: 2.3
Nylon:2.5
As above The safety factors for ropesquoted should only beapplied to primary mooringlines in combination with theSWL defined.
Remark:1. SWL to be marked on or near the fittings in units of metric tons (Letter “t”).2. The SWL of Foundations and Supporting Deck Structure must be specially considered when siting and rating the
capabilities of the fitting. In principle the strength of the supporting structure and connection of the fitting to it shouldbe greater than the fitting itself so that any failure does not result in damage to the ship’s structure. Since foundationsand connections to the deck are often made in non-ideal conditions onboard the ship rather than factory condition,and to allow for possible resulting weld imperfections, it is recommended that they be at least 10% stronger than thefitting.
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