An Egyptian oasis : $b An account of the oasis of Kharga in the Libyan desert, with special reference to its history, physical geography, and water-supplyBeadnell, H. J. L. (Hugh John Llewellyn)
History
An Egyptian oasis : $b An account of the oasis of Kharga in the Libyan desert, with special reference to its history, physical geography, and water-supply
The total annual discharge of the whole of the wells of Kharga Oasis
is barely equal in volume to the water which can be held by saturated
beds underlying 1 square kilometre of surface, assuming the sandstone
to be only 122 metres thick; that is to say, it would take between
3,000 and 4,000 years for the existing wells to discharge the water
held by the beds underlying the depression alone, without considering
the vast surrounding desert areas, where there is no reason to
doubt that the water-tables are equally well developed. It must
not, however, for a moment be supposed that bores would continue
to discharge until the sandstones immediately surrounding them
were completely depleted of water; they would, in all probability,
pass into a sub-artesian condition in a very short time were the
sandstones not replenished from more outlying districts.
In my opinion the subterranean water of the oasis is certainly of
meteoric origin—that is to say, it is water which originally
fell as rain, and has percolated underground from one of the
possible sources above mentioned. It will, however, readily be
admitted that the ordinary explanation of the flow and origin
of artesian wells in regions of moderate or abundant rainfall,
situated in well-defined basins, where the exact position, extent,
and absorbing capacity of the water-table outcrop can be carefully
determined, may be in some respects inadequate to account for the
flowing wells of vast arid regions like the deserts of Africa and
Australia; yet, after due consideration of the arguments for and
against, I am unable to subscribe to Professor J. W. Gregory’s
view[11] that a considerable portion of the waters in such regions
is derived from magmatic or plutonic sources—that is to say,
has its origin in the deep-seated crystalline rocks.
Public-domain text, read in full here on John Shaqi.
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