=The Karst.= Along the eastern coast of the Adriatic, as far south as
Montenegro, lies a belt of limestone mountains singularly worn and
honeycombed by the solvent action of water. Where forests have been
cut from the mountain sides and the red soil has washed away, the
surface of the white limestone forms a pathless desert of rock where
each square rod has been corroded into an intricate branch work of
shallow furrows and sharp ridges. Great sink holes, some of them six
hundred feet deep and more, pockmark the surface of the land. The
drainage is chiefly subterranean. Surface streams are rare and a
portion of their courses is often under ground. Fragmentary valleys
come suddenly to an end at walls of rock where the rivers which occupy
the valleys plunge into dark tunnels to reappear some miles away.
Ground water stands so far below the surface that it cannot be reached
by wells, and the inhabitants depend on rain water stored for
household uses. The finest cavern of Europe, the Adelsberg Grotto, is
in this region. Karst, the name of a part of this country, is now used
to designate any region or landscape thus sculptured by the chemical
action of surface and ground water. We must remember that Karst
regions are rare, and striking as is the work of their subterranean
streams, it is far less important than the work done by the sheets of
underground water slowly seeping through all subsoils and porous rocks
in other regions.
Even when gathered into definite channels, ground water does not have
the erosive power of surface streams, since it carries with it little
or no rock waste. Regions whose underground drainage is so perfect
that the development of surface streams has been retarded or prevented
escape to a large extent the leveling action of surface running
waters, and may therefore stand higher than the surrounding country.
The hill honeycombed by Luray Cavern, Virginia, has been attributed to
this cause.
[Illustration: Fig. 33. Stalactites and Stalagmites, Marengo
Cavern, Indiana]
=Cavern deposits.= Even in the zone of solution water may under
certain circumstances deposit as well as erode. As it trickles from
the roof of caverns, the lime carbonate which it has taken into
solution from the layers of limestone above is deposited by
evaporation in the air in icicle-like pendants called _stalactites_.
As the drops splash on the floor there are built up in the same way
thicker masses called _stalagmites_, which may grow to join the
stalactites above, forming pillars. A stalagmitic crust often seals
with rock the earth which accumulates in caverns, together with
whatever relics of cave dwellers, either animals or men, it may
contain.
Can you explain why slender stalactites formed by the drip of single
drops are often hollow pipes?
Public-domain text, read in full here on John Shaqi.
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