An Unsinkable Titanic: Every Ship its own LifeboatWalker, John Bernard
History
An Unsinkable Titanic: Every Ship its own Lifeboat
Walker, John Bernard
Shipbuilding; Titanic (Steamship)
DIAGRAMS SHOWING PROTECTIVE VALUE OF TRANSVERSE AND LONGITUDINAL
BULKHEADS, WATERTIGHT DECKS, AND INNER SKIN]
Ordinarily, it would suffice to carry the first two bulkheads at the
bow and the last two at the stern to the shelter deck, terminating the
intermediate bulkheads one deck lower. But whatever the deck to which
the bulkheads are carried, care should be taken to make it absolutely
watertight. Otherwise, as already made clear, the so-called watertight
subdivision of the ship may, in time of stress, prove to be a delusion
and a snare.
Although the longitudinal bulkhead, which is employed below the
water-line, and chiefly in the holds and machinery spaces, is the least
used, it is one of the most effective means of subdivision that can be
employed. A certain amount of prejudice exists against it, on the ground
that it confines the inflowing water to one side of the ship, causing it
to list, if not ultimately to capsize. But this objection merely
points the moral that all things must be used with discretion. A single
longitudinal bulkhead, built through the exact centre of a ship, would
invite a speedy capsize in the event of extensive injury below the
water-line. The loss of the British battleship _Victoria_ emphasised
that truth many years ago. But longitudinal bulkheads, carried through
the engine and boiler spaces, at the sides of the ship, are a most
effective protection. Not only is each of the large compartments in the
wider central body of the ship divided into three, but along each side
is provided a row of comparatively small compartments, several of which
could be flooded without causing a serious loss of buoyancy.
These bulkheads, built some 15 to 18 feet in from the side of the ship,
not only form an inner skin for the ship, but they serve as the inner
wall of the coal bunkers. They extend from the inner bottom to the under
side of the lower deck, to both of which they are securely riveted, the
joints being carefully caulked, to render them watertight. The space
between the ship's side and the bulkhead is subdivided by transverse
watertight partitions (see plan of _Mauretania_, Fig. 3, page 129),
placed centrally between the main transverse bulkheads of the ship.
A further and most effective means for protecting the buoyancy is to
construct the ship with a double skin up to and preferably a few feet
above the water-line. The inner skin should extend from the first
bulkhead abaft the engine-room to the first or collision bulkhead,
forward. This construction merely involves carrying the inner floor
plating of the double bottom up the sides of the ship to the under side
of the lower deck. As all merchant ships are built with a double bottom
(see page 107), the cost of thus providing a double skin below the
water-line is small in proportion to the security against flooding which
it affords.
Public-domain text, read in full here on John Shaqi.
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