Central-Station Electric Lighting: With Notes on the Methods Used for the Distribution of Electricity — John Shaqi
Central-Station Electric Lighting: With Notes on the Methods Used for the Distribution of ElectricityHedges, Killingworth
History
Central-Station Electric Lighting: With Notes on the Methods Used for the Distribution of Electricity
Hedges, Killingworth
Electric light plants -- Europe
Fig. 20 is a diagram of the lamps in any building. The street main, M,
enters at the main switch, S, and continues from switch to switch, S¹
S¹, and returns to S before it leaves. It is necessary, to guard
against any possible extinction, to construct all the switches so that
it would be impossible to move the lever without a lamp was lighted;
and, should the lamp give out, an equivalent resistance must be
automatically inserted. These details have been investigated by Mr.
Alexander Bernstein, who has designed a complete system for “series”
lighting, and claims for it special economical advantages. It is,
however, very doubtful if this plan can be recommended for adoption
in private houses; but in public lighting, or in large establishments
where an electrician could be kept to look after the fittings and
the insulation of the conductors, there should be no more danger, in
introducing the high-tension continuous current of 2,000 volts, than
there is at present with the 100-volt alternating current, and the
relative saving in weight of conductors would be an important item.
Installations on this method have been erected at Messrs. Brunner and
Mond’s alkali works, and in several large factories in the United
States where lights had to be distributed over a considerable area; the
system has not, however, come into favour for central-station work.
CLASS IV.
THE MULTIPLE SERIES SYSTEM.
This method of using a high-tension current has already been referred
to in connection with house-to-house lighting at Brighton, it was first
employed for the street lighting of Chesterfield by the Brush Company.
The electric lighting of the town of Temesvar, in Hungary, is on a far
larger scale, and has, from November 1884, successfully superseded a
combination of gas for the more important streets, and petroleum for
the outlying ones, the total cost of which was 26,480 florins per
annum. A twenty-four years’ concession was given to the International
Electric Company, the plant remaining their property at the expiration
of the term, subject to purchase by the municipality at their own
valuation. The public lighting is stipulated to be effected by means of
731 glow lamps of the intensity of 16 candle-power; but the option is
given to the company of switching out a fixed proportion of these lamps
at 11.30 P.M., or of leaving the whole number in operation
with their light-intensity reduced from 16 to 8 candle-power from 11.30
P.M. till dawn. The total number of lighting hours per annum
is 3,597½ for the lamps which are in operation from dusk until dawn,
and 1,816 for those which are extinguished at 11.30 P.M. The
price fixed in the concession for public lighting is 1·5 kreutzer per
16 candle-power lamp per hour, equal to 53 florins 95 kreutzers per
lamp per annum of 3,597½ hours, or 27 florins 24 kreutzers per lamp
per annum of 1,816 hours. The company has found it more convenient
to exercise the option reserved to it, of keeping all the 731 lamps
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