The Geological Story of the Isle of WightHughes, J. Cecil (John Cecil)
Science
The Geological Story of the Isle of Wight
Hughes, J. Cecil (John Cecil)
Geology -- England -- Isle of Wight; Geology, Stratigraphic -- Tertiary; Paleontology -- England -- Isle of Wight
We have a similar state of things in the Isle of Wight. Any one not
knowing the geological story, and looking at the geography of the
Island, might naturally suppose that there would be a stream flowing
from west to east, through the low ground between the two ranges of
downs, and finding its way into the sea in Sandown Bay. Instead of
this the three rivers of the Island, the two Yars and the Medina, all
flow north, and cut through the chalk escarpment of the Central downs,
as if an earthquake had made rifts for them to pass, and so find their
way into the Solent. The explanation is the same as in the case of the
Weald. The rivers began to flow when the Chalk strata were continuous
over the centre of the Island; and their course was determined when
the east and west anticlinal axis rose above the sea.
We shall notice, however, that the Island rivers start from south of
the anticlinal axis. The centre of the Sandown anticline runs just
north of Sandown, but the various branches of the Yar and Medina flow
from well south of this. The explanation would appear to be that the
anticline is almost a monoclinal curve,--that is to say, one slope is
steep, the other not far from horizontal. Streams starting from the
ridge would flow with much greater force down the northern than the
southern side, and would cut back their course much more quickly.
Thus they would continually cut into the heads of the southern
streams, and turn the water supplying them into their own channels.
In its early history a river cuts out its bed, and carries along
pebbles, sand and mud to the sea. The head waters are constantly
cutting back, and the slope becoming less steep, till a time comes
when the stream in its gently inclined lower course has no more power
to excavate, and the finer sediment, which is all that now reaches the
lower river, begins to fill up the old channel. And so the alluvium is
formed which fills the lower portions of our river valleys.
Beyond this, the great rush of waters from melting snows and ice of
the Glacial Period has come to an end. The gentler and diminished
streams of a drier age have no power to roll flint stones along and
form beds of gravel. Gravel terraces border our river valleys at a
higher level than the present streams. Periods alternated during which
gravels were laid down by the river, and when the river acquiring more
erosive force, by an elevation of the land giving its bed a steeper
gradient, or a wetter climate producing a greater rush of water, cut a
new channel deeper in the old valley. So our valleys in Southern
England are frequently bordered by a succession of gravel terraces,
the higher ones being the older, dating from times when the river
flowed at a higher level than at present. Such terraces may be seen
above the Eastern Yar and its tributary streams. In the centre of the
old gravels is the alluvial flat of a later age.
Public-domain text, read in full here on John Shaqi.
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