Submarine Warfare of To-day: How the Submarine Menace Was Met and Vanquished, with Descriptions of the Inventions and Devices Used, Fast Boats, Mystery Ships, Nets, Aircraft, &c. &c., Also Describing the Selection and Training of the Enormous Personnel Used in This New Branch of the NavyDomville-Fife, Charles W. (Charles William)
History
Submarine Warfare of To-day: How the Submarine Menace Was Met and Vanquished, with Descriptions of the Inventions and Devices Used, Fast Boats, Mystery Ships, Nets, Aircraft, &c. &c., Also Describing the Selection and Training of the Enormous Personnel Used in This New Branch of the Navy
Domville-Fife, Charles W. (Charles William)
Submarine warfare; World War, 1914-1918 -- Naval operations -- Submarine
The mines were stored in the stern compartment of the submarine, between
guide-rails fitted with rollers. They were in two rows and moved easily
on the well-greased wheels. The loading was accomplished through
water-tight hatchways in the deck above. In order to expel these mines
from the interior of the submarine when travelling under the surface
each weapon had to be moved into a short expulsion tube or chamber, the
inner cap of which was closed when a mine was inside, and the outer or
sea-cap opened. A supply of compressed air was then admitted into the
back of the tube and the mine forced out into the open sea, in the same
way as a torpedo is now expelled from a submerged tube.
Before another mine could be launched the sea-cap had to be closed, the
water blown from the tube, the inner cap opened and a second mine placed
ready in the chamber. This, however, did not end the difficulty of
laying mines from submarines. The increase in the buoyancy of the boat,
due to the loss of weight as each mine was discharged into the sea, had
to be instantly and automatically compensated by the admission of
quantities of sea-water of equal weight into special tanks, hitherto
empty, situated below the mine-tubes. If this had been neglected the
submarine would have come quickly to the surface, stern uppermost, owing
to the lightening of the hull by the expulsion therefrom of some fifteen
weapons weighing many hundreds of pounds each.
When the mine was clear of the submarine it sank to the bottom, owing to
the weight of the sinker or anchor. After a short immersion, however, a
special device enabled the top half, containing the charge of explosive
and the contact firing horns, to part company with the heavy lower half,
composed of the iron sinker and the reel of mooring wire. The explosive
section then floated up towards the surface, unwinding the wire from the
sinker.
Each mine being set, before discharge, to a certain prearranged depth
(obtained by the captain of the U-C boat either by sounding wires or
from special charts showing the depth of water in feet), the weapon
could not rise quite up to the surface, being checked in its ascent,
when ten feet from the top, by the mooring wire refusing to unwind
farther.
This may sound a little involved, but a careful study of the
accompanying diagrams will make the various movements of the mine and
its sinker, after leaving the submarine, quite clear to the lay reader.
Public-domain text, read in full here on John Shaqi.
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