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
Once more the ‘Académie’ nominated a committee on lightning conductors,
composed of the same members who had signed the ‘Instruction’ of 1854,
and drawn up by Professor Pouillet. He again drew up the report, which
was adopted by the ‘Académie’ on February 19, 1855, and contained some
notable additions to the directions previously given. They related,
as was desired, in the first instance to the Louvre alone, but were
made applicable to all large public buildings. For their efficient
protection, the professor insisted, two things should be kept in view
above all others--namely, first, that the point, always of copper,
should be of greater thickness; and, secondly, that it should have a
never-failing connection with either water or very moist earth. To
ensure the latter, it was recommended, as had been done before, that
the underground part of the conductor should be divided.
The necessity for such a division, and for forming at least two
subterranean arms--the first of it, described as ‘the principal
branch,’ going very deep into ground, into perennial water, and the
second, ‘the secondary branch,’ running nearer the surface--was
explained by Professor Pouillet very clearly in this last report.
‘After a long continuance of dry weather,’ he observed, ‘it often
happens that the lightning-bearing clouds exert their influence only
in a very feeble manner on a dry soil, which is a bad conductor; the
whole energy of their action is reserved for the mass of water which
by percolation has formed below it. It is here that the dispersion of
the electric force (_la décomposition électrique_) takes place; it
will follow the principal branch of the conductor underground, and
leave the secondary branch untouched. The case is entirely different
when, instead of dry weather, there have been heavy rains, moistening
the earth thoroughly, up to the surface. It is the latter now that
is the best, because the nearest, conductor of the electric force,
which will not go to the more permanent sheet of water, lying more or
less deep in the ground, if there is moisture above it. Under these
circumstances, it is indispensable that there should be a direct
connection between the surface soil and the lightning conductor, and
this is what is accomplished by the secondary branch. It is a power in
aid of the principal branch, and one often of the highest importance.’
The suggestion here made was one so evidently good, that it was at
once accepted by the French Government, and the Louvre not only, but
other public buildings, received lightning conductors ending in two
subterranean branches, as proposed by Professor Pouillet.
Public-domain text, read in full here on John Shaqi.
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