The construction of hand windlasses is familiar to every one. In tunnel
work this device is located directly over the shaft, with its axis a
little more than half a man’s height, so that the crank handle does not
rise above the shoulder line. To develop its greatest efficiency the
hoisting rope is passed around the windlass drum so that the two ends
hang down the shaft, and as one end descends the other ascends. A skip,
or bucket, is attached to each of the rope ends; and by loading the
descending skip with construction materials and the ascending skip with
spoil, the two skip loads tend to balance each other, thus increasing
the capacity of the windlass, and decreasing the manual labor required
to operate it. Skips varying from 0.3 cu. yd. to 0.5 cu. yd. are used.
The horse gin consists of a vertical cylinder or drum provided with
radial arms to which the horses are hitched, which revolve the cylinder
by walking around it in a circle. The hoisting rope is rove around the
drum so that the two ends extend down the shaft with skips attached, as
described in speaking of the hand windlass. The power of the horse gin
is, of course, much greater than that of a windlass operated by hand,
skips of 1 cu. yd. capacity being commonly used. Horse gins are no
longer economical hoisting machines, according to one prominent
authority, when V(H + 20) > 5000, where V equals the volume of material
to be hoisted, and H equals the height of the hoist, the weight of the
excavated material being 2100 lbs. per cu. yd. As a general rule,
however, it is assumed that it is not economical to employ horse gins
with a depth of shaft exceeding 150 ft.
As already stated, the most efficient and most commonly used device for
hoisting at tunnel shafts is the steam hoisting engine. There are
numerous builders of hoisting engines, each of which manufactures
several patterns and sizes of engines. In each case, however, the
apparatus consists of a boiler supplying steam to a horizontal engine
which operates one or more rope drums. The engines are always
reversible. They may be employed to hoist the skips directly, or to
operate elevators upon which the skips or cars are loaded. In either
case the hoisting ropes pass from the engine drum to and around vertical
sheaves situated directly over the shaft so as to secure the necessary
vertical travel of the ropes down the shaft. Where the shaft is divided
into two compartments, each having an elevator or hoist, double-drum
engines are employed, one drum being used for the operations in one
compartment, and the other for the operations in the other compartment.
Where the work is to be of considerable duration, or when it is done in
cold weather, more or less elaborate shelters or engine houses are built
to cover and protect the machinery.
Public-domain text, read in full here on John Shaqi.
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