its way into the drainage heading and the long heading of the tunnel
under the estuary in connection with it, it flooded the whole of the
workings in communication with the old shaft, which it also filled
within twenty-four hours from the piercing of the spring.
To obtain increased security against any influx of water from the deep
channel of the estuary into the tunnel, the proposed level portion of
the tunnel, rather more than a furlong long under this part, was lowered
15 ft. by increasing the descending gradient on the Monmouthshire side
from 1 in 100 to 1 in 90, and lowering the proposed rail level on the
Gloucestershire side 15 ft. throughout the ascent, so as not to increase
the gradient of 1 in 100 against the load. A new shaft, 18 ft. in
diameter, was sunk slightly nearer the estuary on the Monmouthshire
shore than the old one; two shafts also were sunk on the land side of
the great spring for pumping purposes; and additional pumping machinery
was erected. The flow from the spring into the old shaft was arrested by
a shield of oak fixed across the heading; and at last, after numerous
failures and breakdowns of the pumps, the headings were cleared of
water, after a diver, supplied with a knapsack of compressed oxygen, had
closed a door in the long heading under the estuary; and the works were
resumed nearly fourteen months after the flooding occurred. The great
spring was then shut off from the workings by a wall across the heading
leading to the old shaft; and, owing to the lowering of the level of the
tunnel, a new drainage heading had to be driven from the bottom of the
new shaft at a lower level, which was made 5 ft. in diameter, and lined
with brickwork, whilst the old drainage heading was enlarged to 9 ft. in
diameter, and lined with brickwork, so as to aid in the permanent
ventilation of the tunnel. The lowering of the level, moreover,
converted the bottom tunnel headings into top headings, so that along
more than a mile of the tunnel the semicircular arch, 26 ft. in
diameter, was built first, and then, after lowering the headings, the
invert was laid and the side walls were built up. Bottom headings were
driven along the remainder of the tunnel, and the work was expedited by
means of break-ups. Ventilation was effected in the works by a fan 18
inches in diameter and 7 ft. wide, fixed at the top of the new deep
shaft; the rock was bored by drills worked by compressed air; the
blasting was eventually effected exclusively by tonite, owing to its
being freer from deleterious fumes than any other explosive; and the
workings were lighted by Swan and Brush electric lamps. The tunnel is
lined throughout with vitrified brickwork, between 2¹⁄₄ ft. to 3 ft.
thick, set in cement, and has an invert 1¹⁄₂ ft. to 3 ft. in thickness;
the lining was commenced towards the end of 1880, the headings under the
river were joined in September, 1881, and the last length of the tunnel,
across the line of the great spring, was completed in April, 1885.
Public-domain text, read in full here on John Shaqi.
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