Ice-Caves of France and SwitzerlandBrowne, G. F. (George Forrest)
Science
Ice-Caves of France and Switzerland
Browne, G. F. (George Forrest)
Ice caves
Rocks of volcanic formation would seem to afford favourable
opportunities for the formation of ice. Scrope mentions this fact in an
account of the curious district called Eiffel or Eifel, in Rhenish
Prussia, which was published originally in the 'Edinburgh Journal of
Science,'[147] and has since been translated in Keferstein's
Deutschland.[148] The village of Roth, near Andernach, is built on a
current of basalt, derived from the cone above it, which has at some
time sent down a stream of lava to the north and west. A small cavern
near the village, forming the mouth of a deep fissure in the
lava-stream, half-way up the cone, displays a phenomenon which the
writer says he has often observed in volcanic formations. The floor of
the cavern was covered with a crust of ice at the time of his visit,
about noon on a very hot day in August. The peasants report that there
is always ice in summer, and never in winter, when the sheep retreat to
the cave on account of its warmth. Steininger[149] found a thickness of
3 feet of ice on September 19, 1818, but it was evidently in a melting
state, and the thermometer stood at 36·5 F. in the cavern. He describes
it as possessing a narrow entrance facing north, entirely sheltered from
the sun by lava-rocks, and by the trees of a wood which covers the cone
of scoria.
Scrope believes that this is the mouth of one of the arched galleries so
frequently met with under lava in Iceland, Bourbon, and elsewhere; and
on this he founds his explanation of the phenomenon. If the other
extremity is connected with the external air at a much lower level, a
current of air must be constantly driven up this gallery, and in its
passage will be dried by the absorbent nature of the rock--which is
perhaps partly owing to the sulphuric or muriatic acid it
contains[150]--and the evaporation caused by this current produces a
coating of ice on the floor of the grotto, where there is a superficial
rill of water. The more rarified the lower external air, the more rapid
will be the current of cool air; and, therefore, the greater the
evaporation. The winter phenomenon is to be explained by the fact that
the current of air will be about the mean annual temperature of the
district, taking its temperature, in fact, from the rocks through which
it passes; and, therefore, by contrast the grotto will appear warm.
Public-domain text, read in full here on John Shaqi.
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