Transactions of the American Society of Civil Engineers, vol. LXVIII, Sept. 1910: The New York Tunnel Extension of the Pennsylvania Railroad,; The North River Division. Paper No. 1151Jacobs, Charles M. (Charles Mattathias)
History
Transactions of the American Society of Civil Engineers, vol. LXVIII, Sept. 1910: The New York Tunnel Extension of the Pennsylvania Railroad,; The North River Division. Paper No. 1151
Jacobs, Charles M. (Charles Mattathias)
Civil engineering -- Periodicals; Railroad tunnels -- Design and construction
In the river wash-borings were made from a floating pile-driver on which
was installed a diamond-drill outfit of rods, pump, etc. Fourteen
borings were completed in the river. Considerable difficulty was found
in holding the pile-driver against the current, the material in the
bottom being very soft, and several borings were lost owing to the
drifting of the pile-driver. Each boring was continued, and the depth of
several was more than 250 ft. below the surface of the water. The
borings on land were mostly core borings, and were generally made with
the chilled shot boring machine.
Base lines, about 2,250 ft. in length, were measured on each side of the
river, and observation points established. It was necessary to build a
triangulation tower 60 ft. high on the New Jersey side as an observation
point. The base lines were measured with 100-ft. steel tapes which were
tested repeatedly, and the work was done at night in order to obtain the
benefit of uniform temperature and freedom from traffic interruptions.
From the base line on the New Jersey side, which passed over the
Weehawken Shaft, an elevated point on the assumed center line on the
side of Bergen Hill was triangulated to, and from this point westward a
closed polygon was measured along the streets to the top of the hill on
the west side and thence along the assumed center line to the portal.
The level transfer across the river was made by sighting across in
opposite directions simultaneously, and also by tide gauges. The outline
of the final triangulation system is shown on Plate VII.
[Illustration: FIG. 2.--(Full page image)
HYDRAULIC SCREWING MACHINE WITH RATCHET DRIVE AND VERTICAL JACK
GENERAL ARRANGEMENT]
[Illustration: FIG. 3.--(Full page image)
HYDRAULIC SCREWING MACHINE WITH RATCHET DRIVE AND VERTICAL JACK
DETAILS]
The decision as to the locations of the shafts on both sides of the
river, for construction purposes and finally for permanent use, was a
comparatively simple matter, and, all circumstances considered, they are
unquestionably in the most suitable places. On the New York side the
shaft was as near as practicable to the line dividing the subaqueous
iron-lined tunnels from the land tunnels, and on the New Jersey side the
shaft was placed centrally on the line of the tunnels and on the nearest
available ground to the river, while at the same time beyond the other
end of the river tunnels, thus necessitating driving the subaqueous
tunnels only from east and west to meet under the river. A caisson shaft
on the New York side, on the line of the tunnels near the river
bulkhead, was at one time considered, but was not adopted as it
entailed the driving of two shields both east and west, in addition to
the two from New Jersey, adding to the plant outlay while not affording
any material saving in the time of construction.
Public-domain text, read in full here on John Shaqi.
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