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
=85. Terrestrial Radiation Thermometer= is an alcohol minimum thermometer,
with the graduations etched upon the stem, and protected by a glass
shield, as shown in figure 65, instead of being mounted on a frame. The
bulb is transparent; that is to say, the spirit is not coloured.
[Illustration: Fig. 65.]
In use, it should be placed with its bulb fully exposed to the sky,
resting on grass, the stem being supported by little forks of wood. The
precautions required with this thermometer are similar to those for
ordinary spirit thermometers, explained at page 76.
[Illustration: Fig. 66.]
=86. AEthrioscope.=--The celebrated experimental philosopher, Sir John
Leslie, was the inventor of this instrument, the purpose of which is to
give a comparative idea of the radiation proceeding from the surface of
the earth towards the sky. It consists, as represented in fig. 66, of two
glass bulbs united by a vertical glass tube, of so fine a bore that a
little coloured liquid is supported in it by its own adhesion, there being
air confined in each of the bulbs. The bulb, _A_, is enclosed in a highly
polished brass sphere, _D_, made in halves and screwed together. The bulb,
_B_, is blackened and placed in the centre of a metallic cup, _C_, which
is well gilt on the inside, and which may be covered by a top, _F_. The
brass coverings defend both bulbs from solar radiation, or any
adventitious source of heat. When the top is on, the liquid remains at
zero of the scale. On removing the top and presenting the instrument to a
clear sky, either by night or by day, the bulb, _B_, is cooled by
terrestrial radiation, while the bulb, _A_, retains the temperature of the
air. The air confined in _B_, therefore, contracts; and the elasticity of
that within _A_ forces the liquid up the tube, to a height proportionate
to the intensity of the radiation. Such is the sensitiveness of the
instrument, that the smallest cloud passing over it checks the rise of the
liquid. Sir John Leslie says:--"Under a clear blue sky, the _aethrioscope_
will sometimes indicate a cold of fifty millesimal degrees; yet, on other
days, _when the air seems equally bright_, the effect is hardly 30 deg." This
anomaly, according to Dr. Tyndall, is simply due to the difference in the
quantity of aqueous vapour present in the atmosphere. The presence of
invisible vapour intercepts the radiation from the aethrioscope, while its
absence opens a door for the escape of this radiation into space.
Public-domain text, read in full here on John Shaqi.
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