Mechanics: The Science of MachineryBond, A. Russell (Alexander Russell)
History
Mechanics: The Science of Machinery
Bond, A. Russell (Alexander Russell)
Machinery; Mechanical engineering; Mechanics
The importance of having accurate timepieces aboard ship was felt as
far back as the time of Columbus. When ships began to go out beyond the
sight of land, it was highly important that they be equipped with some
means of locating their position at sea. By noting the elevation of the
sun at noon with a sextant it was possible to determine the latitude of
the ship, but there was no means of determining its longitude, except
by dead reckoning, that is, using a log to measure the speed of a ship,
and estimating its position by calculating the number of miles it
had traveled since leaving port. If ships could be provided with an
accurate timepiece which would keep the same time as that of some fixed
observatory, it would be possible definitely to locate the position of
the ship east or west by noting how fast or slow the sun was at noon on
the particular day on which the observation was taken. This use of the
chronometer is common in these days, but up to 150 years ago there was
no timepiece sufficiently accurate to permit a navigator to tell with
any certainty just where he was.
It was John Harrison, the son of a Yorkshire carpenter, who was the
first to build a chronometer worthy of the name. A prize of 10,000
pounds was offered by the British Parliament for anyone who could
invent and sell a chronometer which would enable a ship to take a
voyage from England to any of the West Indian islands and back and keep
track of the longitude within one degree. If this could be defined
within two-thirds of a degree, the prize would be 15,000 pounds.
Harrison made a bid for this prize, and after years of effort and
patient labor, he succeeded in being granted a trial. His son, William,
was sent on a ship to Jamaica with the now celebrated chronometer,
which was mounted on a large cushion. The instrument was constantly
attended by the young man, its position being adjusted from time to
time to suit the “lie” of the ship. When the ship was eighteen days
out, the vessel was estimated by dead reckoning to be 13° 50′ west of
Portsmouth, but the chronometer indicated the position as 15° 19′.
The timepiece was immediately condemned as worthless, but William
Harrison had not lost faith in the instrument, and insisted that if
the ship continued on the same course, a certain island, if properly
marked on the chart, would be seen the following day. True to the
prediction, the next morning at seven o’clock the island appeared.
By means of his chronometer William Harrison was able to predict the
appearance of the other islands, and at the end of the voyage, which
occupied sixty-one days, the chronometer was only nine seconds slow.
When he returned to Portsmouth, after an absence of five months, the
error of the chronometer was only one minute and five seconds, giving
an error in distance of only eighteen miles, whereas thirty miles was
the margin of error allowed by the prize conditions. Such accuracy
Public-domain text, read in full here on John Shaqi.
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