The Glaciers of the Alps: Being a narrative of excursions and ascents, an account of the origin and phenomena of glaciers and an exposition of the physical principles to which they are relatedTyndall, John
Science
The Glaciers of the Alps: Being a narrative of excursions and ascents, an account of the origin and phenomena of glaciers and an exposition of the physical principles to which they are related
Tyndall, John
Alps -- Description and travel; Glaciers -- Alps
When a glacier diminishes in size it leaves its lateral moraines
stranded on the flanks of the valleys. Successive shrinkings may thus
occur, and _have_ occurred at intervals of centuries; and a succession
of old lateral moraines, such as many glacier-valleys exhibit, is the
consequence. The Mer de Glace, for example, has its old lateral
moraines, which run parallel with its present ones. The glacier may also
diminish _in length_ at distant intervals; the result being a succession
of more or less concentric terminal moraines. In front of the
Rhone-glacier we have six or seven such moraines, and the Mer de Glace
also possesses a series of them.
Let us now consider the effect produced by a block of stone upon the
surface of a glacier. The ice around it receives the direct rays of the
sun, and is acted on by the warm air; it is therefore constantly
melting. The stone also receives the solar beams, is warmed, and
transmits its heat, by conduction, to the ice beneath it. If the heat
thus transmitted to the ice through the stone be less than an equal
space of the surrounding ice receives, it is manifest that the ice
around the stone will waste more quickly than that beneath it, and the
consequence is, that, as the surface sinks, it leaves behind it a
pillar of ice, on which the block is elevated. If the stone be wide and
flat, it may rise to a considerable height, and in this position it
constitutes what is called a glacier-_table_. (See Fig. 6.)
[Sidenote: GLACIER TABLES ACCOUNTED FOR.]
Almost all glaciers present examples of such tables; but no glacier with
which I am acquainted exhibits them in greater number and perfection
than the Unteraar glacier, near the Grimsel. Vast masses of granite are
thus poised aloft on icy pedestals; but a limit is placed to their
exaltation by the following circumstance. The sun plays obliquely upon
the table all day; its southern extremity receives more heat than its
northern, and the consequence is, that it _dips_ towards the south.
Strictly speaking, the plane of the dip rotates a little during the day,
being a little inclined towards the east in the morning, north and south
a little after noon, and inclined towards the west in the evening; so
that, theoretically speaking, the block is a sun-dial, showing by its
position the hour of the day. This rotation is, however, too small to be
sensible, and hence _the dip of the stones upon a glacier sufficiently
exposed to the sunlight, enables us at any time to draw the meridian
line along its surface_. The inclination finally becomes so great that
the block slips off its pedestal, and begins to form another, while the
one which it originally occupied speedily disappears, under the
influence of sun and air. Fig. 20 represents a typical section of a
glacier-table, the sun's rays being supposed to fall in the direction of
the shading lines.
[Sidenote: TYPE "TABLE."]
[Illustration: Fig. 20. Typical section of a glacier Table.]
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