(a) Describe a method for the attachment of bilge keels. (6)
(b) State THREE reasons for not extending bilge keels to the entire length of the vessel. (5)
(c) Explain TWO principles of roll damping that bilge keels exploit. (5)
(a) Describe a method for the attachment of bilge keels. (6)
(b) State THREE reasons for not extending bilge keels to the entire length of the vessel. (5)
(c) Explain TWO principles of roll damping that bilge keels exploit. (5)
Structured for DG Shipping MEO Class II examination scoring criteria.
Bilge keels are fitted port and starboard at the turn of the bilge. They do not extend outside the lines of the side and bottom shell. The bilge keels are attached directly in line with an internal stiffening member such as a girder or longitudinal. The bilge keel comprises a flat bar doubler welded directly to the shell, and an offset bulb plate (OBP) with 'scallops' cut in it is welded to the flat bar doubler. The ends of the bilge keels are tapered (minimum 3 in 1) and will end in line with transverse internal stiffening, such as a frame. Using a hull doubler protects the hull in case of damage to the keel, as the crack would not extend into the hull.
Increased Roll Period:
$$T_{r}=2\pi\:\frac{k}{\sqrt{g\times GM}}$$
Where:
By increasing k, the ship's stability during roll improves.
Hydrodynamic Resistance: