The temperature of lava as it issues from underground has been
measured more or less satisfactorily, and affords an indication of
that existing within the earth. At Vesuvius it has been ascertained to
be more than 2000 deg. Fahr. At first the molten rock glows with a
white light, which rapidly reddens, and disappears under the rugged
brown and black crust that forms on the surface. Underneath this badly
conducting crust, the lava cools so slowly that columns of steam have
been noticed rising from its surface more than 80 years after its
eruption.
Considerable alteration in the topography of volcanic regions may be
produced by successive eruptions. The fragmentary materials are
sometimes discharged in such abundance as to cover the ground for many
miles around with a deposit of loose ashes, cinders and slag. Such a
deposit accumulating to a depth of many feet may completely bury
valleys and water-courses, and thus greatly affect the drainage. The
coarsest materials accumulate nearest to the vent that emits them. The
finer dust is not infrequently hurled forth with such an impetus as to
be carried for thousands of feet into the tracks of upper
air-currents, whereby it may be borne for hundreds of miles away from
the vent so as ultimately to fall to the ground in countries far
removed from any active volcano. Outflows of lava, from their greater
solidity and durability, produce still more serious and lasting
changes in the external features of the ground over which they flow.
As they naturally seek the lowest levels, they find their way into the
channels of streams. If they keep along the channels, they seal them
up under a mass of compact stone which the running water, if not
wholly diverted elsewhere, will take many long centuries to cut
through. If, on the other hand, the lava crosses a stream, it forms a
massive dam, above which the water is ponded back so as to form a
lake.
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