Passing on to the phenomena of which the crater is the scene at the time
of an eruption, it is stated that at first there is an incessant rise
and fall of the lava which fills the interior of the crater. This double
movement is often interrupted by violent explosions of gas. The crater
of Kilauea, in the Island of Hawaii, contains a lake of molten matter
1,600 feet broad, which is subject to such a double movement of
elevation and depression. Each of the vaporous bubbles as it issues from
the crater presses the molten lava upwards, till it rises and bursts
with great force at the surface. A portion of the lava, half-cooled and
reduced to scoriæ, is thus projected upwards, and the several fragments
are hurled violently in all directions, like those of a shell at the
moment when it bursts.
The greater number of the fragments being thrown vertically into the
air, fall back into the crater again. Many accumulating on the edge of
the opening add more and more to the height of the cone of eruption. The
lighter and smaller fragments, as well as the fine ashes, are drawn
upwards by the spiral vapours, and sometimes transported by the winds
over almost incredible distances.
In 1794 the ashes from Vesuvius were carried as far as the extremity of
Calabria. In 1812 the volcanic ashes of Saint Vincent, in the Antilles,
were carried eastward as far as Barbadoes, spreading such obscurity over
the island, that, in open day, passengers could not see their way.
Finally, some of the masses of molten lava are shot singly into the air
during an eruption with a rapid rotatory motion, which causes them to
assume the rounded shape in which they are known by the name of
_volcanic bombs_.
We have already remarked that the lava, which in a fluid state fills the
crater and the internal vent or chimney of the volcano, is forced
upwards by gaseous fluids, and by the steam which has been generated
from the water, entangled with the lava. In some cases the mechanical
force of this vapour is so great as to drive the lava over the edge of
the crater, when it forms a fiery torrent, spreading over the sides of
the mountain. This only happens in the case of volcanoes of
inconsiderable height; in lofty volcanoes it is not unusual for the lava
thus to force an outlet for itself near the base of the mountain,
through which the fiery stream discharges itself over the surrounding
country. In such circumstances the lava cools somewhat rapidly; it
becomes hard and presents a scoriaceous crust on the surface, while the
vapour escapes in jets of steam through the interstices. But under this
superficial crust the lava retains its fluid state, cooling slowly in
the interior of the mass, while the thickening stream moves sluggishly
along, impeded in its progress by the fragments of rock which this
burning river drives before it.
Public-domain text, read in full here on John Shaqi.
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