Science in Short ChaptersWilliams, W. Mattieu (William Mattieu)
Science
Science in Short Chapters
Williams, W. Mattieu (William Mattieu)
Science
In thus assuming that the heat communicated to the thermopile measures
the solar contribution to terrestrial climate, Professor Langley omits
an important factor, viz., the amount of heat absorbed in traversing
the earth’s atmosphere; and in measuring the relative efficiency of
the spots, penumbra, and photosphere, he has not taken into account
the variations of diathermancy of the intervening atmospheric matter,
which are due to the variations in the source of heat.
Speaking generally, it may be affirmed that the radiations of obscure
heat are more largely absorbed by the gases and vapors of our
atmosphere than those of luminous heat, and the great differences in
the mere luminosity of the spots, penumbra, and photosphere justify
the assumption that the radiations of a sun-spot will (to use the
expressive simile of Tyndall) lose far more by atmospheric sifting than
will those from the photosphere.
But the spot areas will be none the less effective on terrestrial
climate on that account. A given amount of heat arrested by the earth’s
atmosphere will have even greater climatic efficiency than if received
upon its solid surface, inasmuch as the gases are worse radiators than
the rocks, and will therefore, _cæteris paribus_, retain a larger
proportion of the heat they receive.
I have long ago endeavored to show[9] that the depth of the
photosphere, from the solar surface inwards, is limited by
dissociation; that the materials of the Sun within the photosphere
exist in a dissociated, elementary condition; that at the photosphere
they are, for the most part, combined. This view has since been adopted
by many eminent solar physicists, and if correct, demands a much higher
temperature within the depths revealed by that withdrawal of the
photospheric veil which constitutes a sun-spot.
If I am right in this, and also in supposing the spot-radiations to be
so much more abundantly absorbed than those of the photosphere, and if
in spite of this higher temperature of the spots, the _surface_ of the
earth receives from them the lower degree of heat measured by Professor
Langley, another interesting consequence must follow. The excess of
spot-heat directly absorbed by the atmosphere, and mainly by the
water dissolved or suspended in its upper regions, must be especially
effective in dissipating clouds and checking or modifying their
formation. The meteorological results of this may be important, and are
worthy of careful study.
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