It is because long-continued erosion lays bare the innermost
anatomy of an extinct volcano, and even sweeps away the entire
pile with much of the underlying strata, thus leaving the very
roots of the volcano open to view, that we are able to study
underground volcanic structures. With these we include, for
convenience, intrusions of molten rock which have been driven
upward into the crust, but which may not have succeeded in
breaking way to the surface and establishing a volcano. All these
structures are built of rock forced when in a fluid or pasty state
into some cavity which it has found or made, and we may classify
them therefore, according to the shape of the molds in which the
molten rock has congealed, as (1) dikes, (2) volcanic necks, (3)
intrusive sheets, and (4) intrusive masses.
DIKES. The sheet of once molten rock with which a fissure has been
filled is known as a dike. Dikes are formed when volcanic cones
are rent by explosions or by the weight of the lava column in the
duct, and on the dissection of the pile they appear as radiating
vertical ribs cutting across the layers of lava and tuff of which
the cone is built. In regions undergoing deformation rocks lying
deep below the ground are often broken and the fissures are filled
with molten rock from beneath, which finds no outlet to the
surface. Such dikes are common in areas of the most ancient rocks,
which have been brought to light by long erosion.
In exceptional cases dikes may reach the length of fifty or one
hundred miles. They vary in width from a fraction of a foot to
even as much as three hundred feet.
Dikes are commonly more fine of grain on the sides than in the
center, and may have a glassy and crackled surface where they meet
the inclosing rock. Can you account for this on any principle
which you have learned?
VOLCANIC NECKS. The pipe of a volcano rises from far below the
base of the cone,--from the deep reservoir from which its
eruptions are supplied. When the volcano has become extinct this
great tube remains filled with hardened lava. It forms a
cylindrical core of solid rock, except for some distance below the
ancient crater, where it may contain a mass of fragments which had
fallen back into the chimney after being hurled into the air.
As the mountain is worn down, this central column known as the
VOLCANIC NECK is left standing as a conical hill (Fig. 240). Even
when every other trace of the volcano has been swept away, erosion
will not have passed below this great stalk on which the volcano
was borne as a fiery flower whose site it remains to mark. In
volcanic regions of deep denudation volcanic necks rise solitary
and abrupt from the surrounding country as dome-shaped hills. They
are marked features in the landscape in parts of Scotland and in
the St. Lawrence valley about Montreal (Fig. 241).
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