The Ancient Volcanoes of Great Britain, Volume 1 (of 2)Geikie, Archibald
History
The Ancient Volcanoes of Great Britain, Volume 1 (of 2)
Geikie, Archibald
Volcanoes -- Great Britain
Not less striking is the succession of lavas in the Yellowstone
region, as described by Mr. Iddings. The first eruptions consisted
of andesites. These were followed by abundant discharges of basalt,
succeeded by later outflows of andesite, and of basalt like that
previously erupted. After a period of extensive erosion, occupying a
prolonged interval of time, volcanic energy was renewed by the eruption
of a vast flood of rhyolite, after which came a feebler outflow of
basalt that brought the cycle to a close, though geysers and fumaroles
show that the volcanic fires are not yet entirely extinguished
below.[15]
[Footnote 15: _Journal of Geology_, Chicago, i. (1893) p. 606. See
also this author's excellent monograph on "Electric Peak and Sepulchre
Mountain," _12th Ann. Rep. U.S. Geol. Survey_ (1890-91), and Mr. H.
W. Turner on "The Succession of Tertiary Volcanic Rocks in the Sierra
Nevada of North America," _14th Ann. Rep. U.S. Geol. Survey_ (1892-93),
p. 493.]
But not only is there evidence of a remarkable evolution or succession
or erupted material within the volcanic cycle of a single geological
period. One of the objects of the present work is to bring forward
proofs that such cycles have succeeded each other again and again,
at widely separated intervals, within the same region. After the
completion of a cycle and the relapse of volcanic energy into repose,
there has been a renewal of the previous condition of the subterranean
magma, giving rise ultimately to a similar succession of erupted
materials.
If we are at a loss to account for the changes in the sequence of
lavas during a single volcanic cycle, our difficulties are increased
when we find that in some way the magma is restored each time to
somewhat the same initial condition. Analogies may be traced between
the differentiation which has taken place within a plutonic intrusive
boss or sill and the sequence of lavas in volcanic cycles. It can be
shown that though the original magma that supplied the intrusive mass
may be supposed to have had a fairly uniform composition deep down in
its reservoir, differentiation set in long before the intrusive mass
consolidated, the more basic constituents travelling outwards to the
margin and leaving the central parts more acid. If some such process
takes place within a lava-reservoir, it may account for a sequence of
variations in composition. But this would not meet all the difficulties
of the case, nor explain the determining cause of the separation of the
constituents within the reservoir of molten rock, whether arising from
temperature, specific gravity, or other influence. This subject will be
further considered in connection with intrusive Bosses.
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