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
[Illustration: Fig. 50.]
There is one thing, however, regarding churches, that must be well
borne in mind in establishing their protection against lightning.
Besides containing great masses of metal, in bells, organs, and other
contents, they are frequently placed in high situations, exposed to
the most violent discharges of the electric force. It often happens
also that they stand on rocky ground, with the subterranean waters
far below the surface. To ensure absolute protection under these
circumstances, it is indispensable to connect the conductors with
water, wherever it is to be found, by a solid channel, into which
the copper rods may run, if possibly some distance below the surface
of the earth. The form such a channel may take is indicated on the
engraving. It will be seen that the protection against lightning
indicated here is not only for the church, but the adjoining parsonage,
the conductors spreading over both, with points on the most prominent
and exposed places. It would be possible to carry out this principle
in ensuring the protection of a whole block of private buildings.
German electricians think that one channel or well, sufficiently broad,
leading from the surface of the earth to layers always moist, or to
perennial springs, would suffice to carry the electric force discharged
upon a hundred conductors, and all the easier as it would be impossible
that many would be struck at one and the same time by lightning.
Perhaps some such arrangements will be made in the future, when both
houses and towns are built upon a more systematic plan than is followed
at the present time.
If, as a rule, one channel of underground connection is amply
sufficient for the protection of even the largest buildings, there
may be cases in which it is indispensable to spread the conductors
into several directions. It may be laid down, broadly, that when
there is water to be reached, the one channel is sufficient, but that
when this is not possible, or expedient, more lines of underground
connection must be formed. Fig. 51 may serve to illustrate a case of
the latter kind. It shows a powder-magazine, partly above and partly
underground, standing on dry soil, with trees in the neighbourhood,
likely to add to the danger of atmospheric discharges of electricity,
and with no stream, or permanent moisture, into which to guide them.
Nothing remains, under these circumstances, to ensure safety, but to
multiply the lines of underground connection to the utmost extent. To
add to the facility of the dispersion of the electric force, the main
channels may be filled with charcoal, broken coke, or cinders, and if
large quantities of these substances can be placed in one or two pits,
it is possible to make thus an artificial connection as nearly as can
be responding to ‘good earth.’ Still, it must never be forgotten that,
absolutely, ‘good earth’ in reference to lightning conductors means
moisture, or water.
Public-domain text, read in full here on John Shaqi.
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