Water Supply: the Present Practice of Sinking and Boring Wells: With Geological Considerations and Examples of Wells ExecutedSpon, Ernest
Science
Water Supply: the Present Practice of Sinking and Boring Wells: With Geological Considerations and Examples of Wells Executed
Spon, Ernest
Boring; Water-supply; Wells
This tubing was made of galvanized iron plates, riveted together and
soldered; at the top of the hole it was in three concentric circles,
which had been screwed and forced down successively until an obstacle
was met with at three different places. So soon as the outer circle
reached the first depth, all hope appears to have vanished, from those
who bored the earlier part of the work, of getting the tube farther; a
second tube was, therefore, inserted, which seems to have advanced as
far as the second obstacle, where it, in its turn, was abandoned; and a
third one advanced until it rested in the strata at the lower part of
the lias freestone of a blue nature, as found on the rocks at Seaton
Carew, and in the bed of the Leven, near Hutton Rudby. The diameter of
the first tubing was 3-7/8 inches external and 3-1/2 inches internal;
the second tube was 3-1/4 inches external, and 3 inches internal
diameter; and the third tube was 2-3/4 inches external and 2-1/2 inches
internal diameter.
Such being the account gathered from the workmen who superintended the
earlier part of the boring, it became necessary to decide upon the best
cause to remedy the evil. At first sight it would have appeared easy
enough to have caught the lower end of the tubes by means of a fish-head
properly contrived, and thus to have lifted them out of the hole, and
replaced them with a perfect tube, such as a gas-tube, with faucet
screw-joints; but, on attempting this, it soon became evident that
however good the tubing which might have been adopted, it would be a
work of the greatest difficulty to extract when once it was regularly
fixed and jammed into its place by the tenacious clayey strata
surrounding it; and the difficulty of extracting it, in the present
case, was even enhanced by the inferior quality and make of the tubing;
in short, that, unless by crumpling it up in such a manner as to destroy
the hole, it was impossible to extract this tubing by main force.
There was, therefore, no other choice left but to attempt cutting it
out, inch by inch; though before doing so, force was applied to the
bottom of the tubing, to the extent of upwards of 30 tons, the only
result being the loss of several pieces of steel down the hole, which
had to be brought up with a powerful magnet.
After much mature consideration and contrivance, it was determined to
order such tubing as would at the same time present as little obstacle
as possible to the clay to be passed through on the outside, as well as
surround the largest of the three tubes then in the hole, and present no
obstacle to their being withdrawn through its interior.
These tubes were made 12 feet in length, flush outside and in, the lower
portion being steeled for 6 inches from the bottom end, so as to cut its
way and follow down the space, and cover that exposed by the old tubes
when cut and drawn, as shown in Fig. 92.
Public-domain text, read in full here on John Shaqi.
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