Lightning Conductors: Their History, Nature, and Mode of ApplicationAnderson, Richard, F.C.S.
History
Lightning Conductors: Their History, Nature, and Mode of Application
Anderson, Richard, F.C.S.
Lightning conductors
‘But the most singular fact, in a certain respect, is what was observed
in the tube which descends to Alatri--that is to say, the alteration
in form of the leaden slab. The little interruption which necessarily
exists in this tank between the conducting-pipe and the metallic
receptacle evidently gave occasion for a discharge by a flash, and, in
consequence, for an explosion of steam. But we see at the same time
by that that the distance traversed in the tube from the building to
the slab, a distance of more than 200 metres [650 feet], in which the
pipe is buried underground, did not suffice for the charge to lose
itself in the ground, although during the passage it had to cross the
reservoir, and might there have distributed itself. Our surprise is
still greater when we reflect that it was only part of the discharge,
since the greater portion had to flow by the water-pipe of Ferentino,
which was the first struck in a direct manner, and that these pipes
are joined together with lead. The quantity of electricity must have
been enormous, in order to be able to have so much force and to run
another 300 metres [975 feet] to reach the public fountain, and leave
its traces there. A circumstance which deserves attention is, that this
storm took place after a long and constant drought; and consequently
the earth was less moist, and could offer little facility for
dispersion.
‘These cases are not so rare among us as one might suppose. Not very
long ago, at Lavinia, a flash of lightning destroyed a great part of
the belfry, passed to the bell, broke and melted it in its passage in
such a manner that the metal had run away like wax. I do not believe
this breakage of the bell to have been a mechanical effect of the
lightning in a rigorous sense, for the bell could have been broken by
the instantaneous expansion produced by the heat at the point of the
passage, an expansion which had had no time to disperse, as a glass
vase breaks when touched with a red-hot iron.
‘Let these facts come about how they may, they enable us to see that it
is necessary to devote great attention in the erection of lightning
conductors, that we must allow them a large surface for discharge, _and
that there can never be too much of it_. The surface of the foot of
our lightning conductor was certainly superior to what has been judged
sufficient by Matteucci for the discharges of telegraphic conductors,
and yet it has not sufficed. Further, it is a confirmation of the
necessity of making the neighbouring metallic masses communicate, and
especially with water and gas-pipes.’
Public-domain text, read in full here on John Shaqi.
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