The four hollow hemispherical cups are mounted upon cross-arms at right
angles to each other, with the open sections vertical and facing the
same way around the circumference. The cross-arms are on a vertical
axis, which has at its lower end an endless screw. This axis is
supported so as to turn with as little friction as possible. The endless
screw is in gear with a wheel which moves two dials registering the
number of revolutions of the cups. The mechanisms are mounted in a
suitable metal case with glass front, as shown in the illustration, well
protected from the weather, the whole being designed for outdoor use.
[Illustration:
_Courtesy Julien Friez & Sons, Baltimore, Md._
Fig. 39
]
The center of the cups moves with a velocity about one-third that of the
wind which puts them in motion. The cups are four inches in diameter.
The distance from center of cup to center of rotation or axis is 6.72
inches. Assuming that the wind-travel is exactly three times that of the
center of the cup, the dials are marked to register miles of wind
travel, five hundred revolutions of the cups corresponding to a mile.
The ratio of wind-travel to travel of cup is in reality variable,
depending on the velocity of the wind. It is less for high than low
velocities. It varies also with the dimensions of the instrument, being
different for every different length of arm and diameter of cup.
On account of the great interference offered by buildings and other
obstructions to the free movement of the wind, its velocity is much less
in the vicinity of these obstructions than beyond; therefore, in
selecting the location for an anemometer, preference should be given to
the more elevated points in the vicinity of the station, and some rigid
support should be used to raise the instrument as far as practicable
above the immediate influence of the office building itself. The support
must be set up so that the anemometer on top or on the cross-arm is as
nearly vertical as possible.
The illustration shows clearly the appearance of an approved Weather
Bureau pattern combined support for wind instruments, similar to the one
installed at our plant.
[Illustration:
Fig. 40
]
[Illustration:
_Courtesy Taylor Instrument Companies Rochester, N. Y._
Fig. 41
]
Fig. 37. The Gilbert Anemometer.
The Gilbert Anemometer consists of a case containing a spindle passing
through a worm gear, which turns a toothed gear. This gear in its rotary
motion makes a contact with a brass brush, which is connected
electrically with a flashlight. The cross-arms, with cups attached, is
placed on the spindle, and as the wind blows, it revolves the cups,
causing the contact. The velocity of the wind is determined by counting
the flashes for fifteen seconds, thus giving you the number of miles per
hour. For instance, if light flashes eight times in fifteen seconds,
this signifies that the wind is blowing eight miles an hour.
Fig. 38. How to Connect the Gilbert Anemometer.
Public-domain text, read in full here on John Shaqi.
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