A Treatise on Meteorological Instruments: Explanatory of Their Scientific Principles, Method of Construction, and Practical Utility — John Shaqi
A Treatise on Meteorological Instruments: Explanatory of Their Scientific Principles, Method of Construction, and Practical UtilityNegretti, Enrico Angelo Lodovico
Science
A Treatise on Meteorological Instruments: Explanatory of Their Scientific Principles, Method of Construction, and Practical Utility
Negretti, Enrico Angelo Lodovico
Meteorological instruments; Meteorology; Scientific apparatus and instruments
When the mercury in a barometer tube rises or falls, the level of the
mercury in the cup, or _cistern_, as it is generally termed, falls or
rises by a proportionate quantity, which depends upon the relative areas
of the interior of the tube and of the cistern. It is necessary that this
should be taken into consideration in ascertaining the exact height of the
column. If a fixed scale is applied to the tube, the correct height may be
obtained by applying a correction for capacity. A certain height of the
mercury is ascertained to be accurately measured by the scale, and should
be marked on the instrument as the _neutral point_. Above this point the
heights measured are all less, and below, all more, than they should be.
The ratio between the internal diameters of the tube and cistern (which
should also be stated on the instrument, as, for instance, capac. 1/50)
supplies the data for finding the correction to be applied. This
correction is obviated by constructing the cistern so as to allow of the
surface of the mercury in it being adjustable to the commencement of the
fixed scale, as by Fortin's or Negretti's plan. It is also unnecessary in
barometers constructed on what is now called the "Kew method." These will
all be detailed in their proper place. The tube, being fixed to the
cistern, may have a moveable scale applied to it. But such an arrangement
requires the utmost care and skill in observing, and is seldom seen except
in first-class Observatories.
[Illustration: Fig. 2.]
=3. Fortin's Barometer.=--Fortin's plan of constructing a barometer
cistern is shown in fig. 2. The cistern is formed of a glass cylinder,
which allows of the level of the mercury within being seen. The bottom of
the cylinder is made of sheep-skin or leather, like a bag, so as to allow
of being pushed up or lowered by means of a screw, D B, worked from
beneath. This screw moves through the bottom of a brass cylinder, C C,
which is fixed outside, and protects the glass cylinder containing the
mercury. At the top of the interior of the cistern is fixed a small piece
of ivory, A, the point of which exactly coincides with the zero of the
scale. This screw and moveable cistern-bottom serve also to render the
barometer portable, by confining the mercury in the tube, and preventing
its coming into the cistern, which is thus made too small to receive it.
4. STANDARD BAROMETER.
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