We see now the necessity for correcting the standard clock by gradually
increasing or decreasing the rate, for if it were done rapidly, the
controlled clocks would break away from the control, and not be slowed
and accelerated with the standard. At Greenwich the correction, usually
only a fraction of a second, is made a little before the hours of 10
A.M. and 1 P.M., since at those instants a distribution of time is made
throughout the country. This distribution is made as follows:—
An electric circuit is broken in two places at the standard clock, one
place of which is connected for some seconds on either side of each
hour, while the other is connected at each sixtieth second; both breaks
can therefore be only connected at the commencement of each hour, and
then only can the current pass. We will call this, therefore, the hourly
current: it acts on the magnet discharging the Greenwich time ball at
one o’clock daily, and on the magnet of the hourly relay shown in Fig.
129, which completes various circuits. One goes to the London Bridge
station of the South-Eastern Railway Co., and the other to the General
Post Office for further distribution. The bell and galvanometer in the
figure marked “S. E. R. hourly signal and Deal ball,” and “Post Office
Telegraphs” show the passage of these signals. We have now got the
hourly signal at the Post Office, and this is distributed by means of
the Chronopher, or rather Chronophers, for there are two, the old one
originally constructed by Mr. Yarley, and brought from Telegraph Street
on the removal to St. Martin’s-le-Grand, and a new one, much larger,
shown in the accompanying Fig. 130. It is to this that the Greenwich
wire is led, and the current transmitted to the different lines. The
lines are divided into four groups, (1) the metropolitan, (2) short
provincial, (3) medium provincial, (4) long provincial; the first being
wires passing to points in London only, the second to places within
about 50 miles of London, the third to more distant places, and the
fourth to the more distant places still, requiring signals. The ends of
each of the four groups are brought together, and each group has its
separate relay. These four relays—the left-hand four shown in Fig.
130—are all acted upon by the Greenwich signal and therefore act
simultaneously, each relay sending a portion of the current of its
battery through each wire of its group.
[Illustration:
FIG. 130.—The Chronopher.
]
Public-domain text, read in full here on John Shaqi.
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