Illustrations of the Croton AqueductTower, F. B. (Fayette Bartholomew)
History
Illustrations of the Croton Aqueduct
Tower, F. B. (Fayette Bartholomew)
Croton Aqueduct (N.Y.)
The width of the tunnel excavation in rock is the same as that of open
excavation in rock; and the manner of building the masonry to form
the channel-way is the same, with the exception that the rock roof of
the tunnel serves as the roof of the channel-way, where it is sound,
but in cases where the rock is soft and liable to fall, a brick arch
is built over the channel-way, and the space between its extrados, or
outer surface, and the rock roof is filled with earth closely rammed
in. In some instances where the tunnel perforated rock which was at
first quite hard, the roofing has by exposure to the air, become soft
and insecure, so as to render it necessary to turn an arch for its
support. This is attended with inconvenience and some difficulty after
the channel-way has been completed and closed through the tunnel.
Plate IV. is a section of the Aqueduct in tunnel cutting in earth.
When the earth is dry and compact, the excavation for the bottom and
sides is made of a proper form to receive the masonry, which is built
closely against it: the top is excavated sufficiently high to give room
to turn the arch, and the space above is afterwards filled with earth
closely rammed in. Where the earth is wet and there is difficulty in
making it stand, the excavation is made larger, and props of timber
and plank are used to support the top and sides until the masonry
be completed; and the whole space exterior to the masonry is then
compactly filled with earth.
Plate V. is a section of the Aqueduct showing the manner of
constructing it across valleys, or where the natural surface of the
ground falls below the plane of grade.
In such cases the Aqueduct is supported upon a foundation wall of
stone laid dry, and formed by using large stones laid in positions
to give proper bond, and to allow small broken stone to be closely
packed in, filling up all the interstices so as to form a compact and
uniform mass. The wall is generally allowed to stand some months after
it is completed, before the masonry of the Aqueduct is commenced upon
it, lest by this weight being placed upon it before it has found its
bearing, it should settle and cause cracks in the masonry. That such
settlement should in some instances occur, even after the Aqueduct
is completed, is not surprising, for passing over so many different
elevations, and encountering such numerous transitions from a hard
soil, or from rock, to valleys of alluvial deposit, it would be beyond
human powers of foresight and vigilance to prevent it.
[Illustration: V
_F. B. Tower._ _Gimber._
]
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