The Wonder Book of Volcanoes and EarthquakesHouston, Edwin J. (Edwin James)
Science
The Wonder Book of Volcanoes and Earthquakes
Houston, Edwin J. (Edwin James)
Earthquakes; Volcanoes
Of course, when an extinct volcano again becomes active, two things
must happen if the eruption is explosive. In the first place, the
force of the explosion must be sufficiently great to loosen the
stopper or plug of hardened lava which stops it. In doing this the
mass is broken into a number of fragments that are thrown forcibly
upwards into the air. After rising often for great heights they soon
fall again on the sides of the mountain.
But besides the breaking up of the stopper, the lake in the crater of
the volcano is thrown out along with the cinders or ashes, producing
very destructive flows of what are called aqueous lava or mud streams.
These streams flow down the sides of the mountain, carrying with them
immense quantities of both the ashes thrown out during the eruption,
or those that have collected around the sides of the crater during
previous eruptions. Very frequently, these streams of aqueous lava
produce greater destruction than the molten lava.
If you have ever watched common ants at work clearing out or enlarging
their underground homes, in a piece of smooth gravel walk in your
garden, you can form some idea why the mountain immediately around a
volcanic crater is conical in shape. If the colony of ants happens
to be fairly large, you can see an almost unbroken stream of these
industrious little animals, each bearing in its mandibles a small
grain of sand or gravel brought up from some place below the surface.
Carrying it a short distance from the opening, it throws it on the
ground, rapidly returning for another load. In this way there is
heaped up around all sides of the opening a pile of sand or gravel,
the outward slopes of which gives the pile a conical form. You have,
probably, noticed that the steepness of the slopes depends on the size
of the grains; for the larger these grains the sharper or steeper the
slopes, the very fine grains producing flat mounds or cones.
It is the same with a volcanic cone. The materials that are thrown
upwards into the air, falling again on the mountain, collect around
the crater on all sides, thus giving it the characteristic cone-like
shape of the volcanic mountain. Where nothing occurs to disturb
the formation of the cone its height above the level of the sea
will gradually increase. Very frequently, however, during explosive
eruptions, a large part of this cone will be blown away by the
force of the eruption only to be again built up during some later
eruption. Indeed, in the case of volcanic islands, the force of a
great volcanic eruption is sometimes so great that not only is a large
volcanic mountain blown entirely away, but a hole is left, where it
had been standing, that extends further downwards below the level
of the sea than the top of the mountain extended previously above
it. The above are some, but by no means all, the wonders attending
volcanic eruptions. We shall refer to others in subsequent chapters in
describing particular eruptions.
CHAPTER III
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