That the mean temperature of the whole earth would, during the
glacial epoch, be greater when the earth was in aphelion than
when in perihelion will, I think, be apparent from the following
considerations:—When the earth was in the perihelion, the sun would
be over the hemisphere nearly covered with snow and ice. The great
strength of the sun’s rays would in this case have little effect in
raising the temperature; it would be spent in melting the snow and
ice. But when the earth was in the aphelion, the sun would be over the
hemisphere comparatively free, or perhaps wholly free, from snow and
ice. Consequently, though the intensity of the sun’s rays would be less
than when the earth was in perihelion, still it ought to have produced
a higher temperature, because it would be chiefly employed in heating
the ground and not consumed in melting snow and ice.
_Professor Tyndall on the Glacial Epoch._—“So natural,” says Professor
Tyndall, “was the association of ice and cold, that even celebrated
men assumed that all that is needed to produce a great extension of
our glaciers is a diminution of the sun’s temperature. Had they gone
through the foregoing reflections and calculations, they would probably
have demanded _more_ heat instead of less for the production of a
glacial epoch. What they really needed were _condensers_ sufficiently
powerful to congeal the vapour generated by the heat of the sun.” (_The
Forms of Water_, p. 154. See also, to the same effect, _Heat Considered
as a Mode of Motion_, chap. vi.)
I do not know to whom Professor Tyndall here refers, but certainly his
remarks have no application to the theory under consideration, for
according to it, as we have just seen, the ice of the glacial epoch was
about as much due to the nearness of the sun in perigee as to his great
distance in apogee.
There is one theory, however, to which his remarks justly apply, viz.,
the theory that the great changes of climate during geological ages
resulted from the passage of our globe through different temperatures
of space. What Professor Tyndall says shows plainly that the glacial
epoch was not brought about by our earth passing through a cold part
of space. A general reduction of temperature over the whole globe
certainly would not produce a glacial epoch. Suppose the sun were
extinguished and our globe exposed to the temperature of stellar space
(−239° F.), this would certainly freeze the ocean solid from its
surface to its bottom, but it would not cover the land with ice.
Professor Tyndall’s conclusions are, of course, equally conclusive
against Professor Balfour Stewart’s theory, that the glacial epoch may
have resulted from a general diminution in the intensity of the sun’s
heat.
Public-domain text, read in full here on John Shaqi.
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