Geology, Vol. 1 [of 3] : $b Geologic processes and their resultsSalisbury, Rollin D.
Science
Geology, Vol. 1 [of 3] : $b Geologic processes and their results
Salisbury, Rollin D.
Geology
=Structure of the ice.=—Ice formed beneath a snow-field is in some
sense stratified. It is made up of successive falls of snow which
tend to retain the form of layers. This follows from two or three
conditions. The snow of one season, or of one period of precipitation,
may have been considerably changed before the succeeding fall of snow.
So also the surface of the snow-field at the end of the melting season
is often covered with a visible amount of earthy matter, some of which
was blown up and dropped on the surface during the melting season, and
some of which was concentrated in that position by the melting of the
snow in which it was originally imbedded. The amount of earthy matter
is often sufficient to define snows of successive years, or perhaps of
minor periods of precipitation, and makes distinct the stratification
which would otherwise remain obscure. The snowfall of successive years
has been estimated by this means[122] where the snow is exposed in
crevices in the snow-field.
In addition to its rude stratification, the ice of the deeper portions
often acquires a stratiform structure which may perhaps best be called
_foliation_ to distinguish it from the _stratification_ which arises
from deposition. The foliation appears to result mainly from the
shearing of one part over another in the course of the movements to
which the ice is subjected, as will be illustrated presently.
=Texture.=—The ice derived from the snow is formed of interlocking
crystalline grains. The crystalline character is present from the
beginning, for it is assumed by the snowflakes when they form, and
the subsequent changes seem only to modify the original crystals
by building up some and destroying others. By the time the snow is
converted into névé, the granules have become coarse, and wherever the
ice derived from the névé has been examined, the granular crystalline
texture is present. The individual crystals in the ice are usually
larger than those of the névé, and more closely grown together. In the
fresh unexposed ice the crystals are so intimately interlocked that
they are not readily seen except under a polarizing microscope, but
when the ice has been honeycombed by partial melting, the granules
become partially separated and may be easily seen. Fig. 223 shows
quantities of them which have been washed down from the surface,
and disposed as cones at its base. While a given mass of snow in a
great snow- and ice-field cannot be followed consecutively through
its whole history, yet since (1) the granular texture is pronounced
in the névé stage where the granules show evidences of growth, and
since (2) the same texture is also pronounced in the last stages of
the ice when it is undergoing dissolution, as well as at all observed
intermediate stages, and since (3) the crystals are, on the average,
larger in proportion to the lateness of the stage of their history,
while (4) experiment has shown that granules grow under the conditions
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account