Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
Veins have the same general forms as dikes, since the fissures are
formed in the same way for both; but the vein is of slow growth, and may
require ages for its completion, while the dike is formed in an hour or
a day. It is now generally believed that water is an important agent in
the formation of eruptive rocks; since they all contain water at the
time of their eruption; and since it has been demonstrated that, while
ordinary rocks require a temperature of 2000° to 3000° for their fusion
in the absence of water, they are liquified at temperatures below 1000°
in the presence of water. In other words, common rocks are very
infusible and insoluble bodies, and heat and water acting independently
have little effect upon them; but when fire and water are combined in
what is now known as aqueo-igneous fusion, they prove very efficient
agents of liquefaction.
If we adopt these views, then it can be shown that, in origin, veins and
dikes differ in degree only, and are not fundamentally unlike; and the
formation and relations of the three great classes of rocks may be
summarized as follows:—
The ocean and atmosphere, operating on the earth’s surface, have worked
over and stratified the crust, until the sedimentary rocks have now an
average thickness variously estimated at from ten to thirty or forty
miles. This entire thickness of stratified rocks, and a considerable
depth of the underlying unstratified crust, must be saturated with
water; and all but the more superficial portions of this water-soaked
crust must be very hot, the temperature increasing steadily downwards
from the surface. Both eruptive and vein rocks originate in this highly
heated, hydrated crust. Eruptive rocks are formed when the heat, aided
by more or less water, softens the rocks, either stratified or
unstratified, by aqueo-igneous fusion, and the plastic materials are
forced up through fissures to or toward the surface. Vein rocks are
formed when the water, aided by more or less heat, dissolves the rocks,
either stratified or unstratified, by what may be called igneo-aqueous
solution, and subsequently deposits the mineral matter in, _i.e._, on
the walls of, fissures leading up to or toward the surface. In the case
of the dike rocks, heat is the chief agent, and water merely an
auxiliary; while with the vein rocks it is just the reverse. But between
the two it is probably impossible to draw any sharp line.
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