Elevator Systems of the Eiffel Tower, 1889Vogel, Robert M.
History
Elevator Systems of the Eiffel Tower, 1889
Vogel, Robert M.
Elevators -- History; Tour Eiffel (Paris, France)
The popularity of the water-balance system waned after only a few years,
being eclipsed by more rational systems. Hale eventually abandoned it and
became the western agent for Otis--by this time prominent in the
field--and subsequently was influential in development of the hydraulic
elevator.
The rope-geared system of hydraulic elevator operation was so basically
simple that by 1880 it had been embraced by virtually all manufacturers.
However, for years most builders continued to maintain a line of steam and
belt driven machines for freight service. Inspired by the rapid increase
of taller and taller buildings, there was a concentrated effort,
heightened by severe competition, to refine the basic system.
[Illustration: Figure 13.--Vertical cylinder, rope-geared hydraulic
elevator with 2:1 gear ratio and rope control (about 1880). For higher
rises and speeds, ratios of up to 10:1 were used, and the endless rope was
replaced by a lever. (Courtesy of Otis Elevator Company.)]
By the late 1880's a vast number of improvements in detail had appeared,
and this form of elevator was considered to be almost without defect. It
was safe. Absence of a drum enabled the car to be carried by a number of
cables rather than by one or two, and rendered overtravel impossible. It
was fast. Control devices had received probably the most attention by
engineers and were as perfect and sensitive as was possible with
mechanical means. Cars with lever control could be run at the high speeds
required for high buildings, yet they could be stopped with a smoothness
and precision unattainable earlier with systems in which the valves were
controlled by an endless rope, worked by the operator. It was almost
completely silent, and when the cylinder was placed vertically in a well
near the shaft, practically no valuable floor space was occupied. But most
important, the length of rise was unlimited because no drum was used. As
greater rises were required, the multiplication of the ropes and sheaves
was simply increased, raising the piston-car travel ratio and permitting
the cylinder to remain of manageable length. The ratio was often as high
as 10 or 12 to 1, the car moving 10 or 12 feet to the piston's 1.
In addition to its principal advantages, the hydraulic elevator could be
operated directly from municipal water mains in the many cities where
there was sufficient pressure, thus eliminating a large investment in
tanks, pumps and boilers (fig. 14).
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