Meteorology; or, Weather ExplainedM'Pherson, J. G. (John Gordon)
Science
Meteorology; or, Weather Explained
M'Pherson, J. G. (John Gordon)
Meteorology
Ocular demonstration can testify to this. If two closed glass receivers be
placed beside each other, the one containing ordinary air, and the other
filtered air (_i.e._ air deprived of its dust by being driven through
cotton wool), and if jets of steam be successively introduced into these,
a strange effect is noticed. In the vessel containing common air the steam
will be seen rising in a dense cloud; then a beautiful white foggy cloud
will be formed, so dense that it cannot be seen through. But in the vessel
containing the filtered air, the steam is not seen at all; there is not
the slightest appearance of cloudiness. In the one case, where there was
the ordinary atmospheric dust, fog at once appeared; in the other case,
where there was no dust in suspension, the air remained clear and
destitute of fog. Invisible dust, then, is necessary in the air for the
formation of fogs.
The reason of this is that a free-surface must exist for the condensation
of the vapour-particles. The fine particles of dust in the air act as
free-surfaces, on which the fog is formed. Where there is abundance of
dust in the air and little water-vapour present, there is an
over-proportion of dust-particles; and the fog-particles are, in
consequence, closely packed, but light in form and small in size, and take
the lighter appearance of fog. Accordingly, if the dust is increased in
the air, there is a proportionate increase of fog. Every fog-particle,
then, has embosomed in it an invisible dust-particle.
But whence comes the dust? From many sources. It is organic and inorganic.
So very fine is the inorganic dust in the atmosphere that, if the
two-thousandth part of a grain of fine iron be heated, and the dust be
driven off and carried into a glass receiver of filtered air, the
introduction of a jet of steam into that receiver would at once occasion
an appreciable cloudiness.
This is why fogs are so prevalent in large towns. Next the minute
brine-particles, driven into the air as fog forms above the ocean surface,
are the burnt sulphur-particles emanating from the chimneys in towns. The
brilliant flame, as well as the smoky flame, is a fog-producer. If gas is
burnt in filtered air, intense fog is produced when water-vapour is
introduced. Products of combustion from a clear fire and from a smoky one
produce equal fogging. The fogs that densely fill our large towns are
generally less bearable than those that veil the hills and overhang the
rivers.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account