Coral Reefs; Volcanic Islands; South American Geology — CompleteDarwin, Charles
Science
Coral Reefs; Volcanic Islands; South American Geology — Complete
Darwin, Charles
Beagle Expedition (1831-1836); Coral reefs and islands; Geology -- South America; Islands; Volcanoes
Several causes appear capable of producing zones of different tension,
in masses semi-liquified by heat. In a fragment of devitrified glass, I
have observed layers of sphærulites which appeared, from the manner in
which they were abruptly bent, to have been produced by the simple
contraction of the mass in the vessel, in which it cooled. In certain
dikes on Mount Etna, described by M. Elie de Beaumont,[49] as bordered
by alternating bands of scoriaceous and compact rock, one is led to
suppose that the stretching movement of the surrounding strata, which
originally produced the fissures, continued whilst the injected rock
remained fluid. Guided, however, by Professor Forbes’[50] clear
description of the zoned structure of glacier-ice, far the most
probable explanation of the laminated structure of these feldspathic
rocks appears to be, that they have been stretched whilst slowly
flowing onwards in a pasty condition,[51] in precisely the same manner
as Professor Forbes believes, that the ice of moving glaciers is
stretched and fissured. In both cases,
the zones may be compared to those in the finest agates; in both, they
extend in the direction in which the mass has flowed, and those exposed
on the surface are generally vertical: in the ice, the porous laminæ
are rendered distinct by the subsequent congelation of infiltrated
water, in the stony feldspathic lavas, by subsequent crystalline and
concretionary action. The fragment of glassy obsidian in Mr. Stokes’
collection, which is zoned with minute air-cells must strikingly
resemble, judging from Professor Forbes’ descriptions, a fragment of
the zoned ice; and if the rate of cooling and nature of the mass had
been favourable to its crystallisation or to concretionary action, we
should here have had the finest parallel zones of different composition
and texture. In glaciers, the lines of porous ice and of minute
crevices seem to be due to an incipient stretching, caused by the
central parts of the frozen stream moving faster than the sides and
bottom, which are retarded by friction: hence in glaciers of certain
forms and towards the lower end of most glaciers, the zones become
horizontal. May we venture to suppose that in the feldspathic lavas
with horizontal laminæ, we see an analogous case? All geologists, who
have examined trachytic regions, have come to the conclusion, that the
lavas of this series have possessed an exceedingly imperfect fluidity;
and as it is evident that only matter thus characterised would be
subject to become fissured and to be formed into zones of different
tensions, in the manner here supposed, we probably see the reason why
augitic lavas, which appear generally to have possessed a high degree
of fluidity, are not,[52] like the feldspathic lavas, divided into
laminæ of different composition and texture. Moreover, in the augitic
series, there never appears to be any tendency to concretionary action,
which we have seen plays an important part in the lamination of rocks,
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