The Energy System of Matter: A Deduction from Terrestrial Energy PhenomenaWeir, James, active 1883-1912
Science
The Energy System of Matter: A Deduction from Terrestrial Energy Phenomena
Weir, James, active 1883-1912
Force and energy
From these considerations of the ordinary atmospheric physical
properties of air and aqueous vapour it may be readily seen how each is
eminently adapted to its function in the atmospheric process. The
peculiar duty of the aqueous vapour is the absorption and transmission
of energy. Its relatively enormous capacity for energy, the high value
of its latent heat at all ordinary atmospheric temperatures, and the
fact that it must always operate precisely at its evaporation
temperature makes it admirably suited for both functions. Thus, in
virtue of its peculiar physical properties, it forms an admirable agent
for the storage of energy and for its transmission to the surrounding
air masses. The low temperature of evaporation of these air masses
ensures their permanency in the gaseous state. They are thus perfectly
adapted for expansive and other movements, for the conversion of their
energy against gravity into energy of position, or for any other
reactions involving temperature change without condensation.
40. _Transmission of Energy from Aqueous Vapour to Air Masses_
The working of the second or transmission stage of the atmospheric
machine involves certain energy operations in which gravitation is the
incepting factor or agency. Let it be assumed that a mass of aqueous
vapour liberated at its surface of evaporation by the transformation of
axial energy, expands upwards against the gravitative attraction of the
earth (§§ 34, 38). As the gaseous particles ascend and thus gain energy
of position, they do work against gravity. This work is done at the
expense of their latent energy. Since the aqueous material is always
working precisely at its evaporation temperature, this gain in energy of
position and consequent loss of latent energy will be accompanied by an
equivalent condensation and conversion of the rising vapour into the
liquid form. This condensation will thus be the direct evidence and
measure of work done by the aqueous material against the gravitational
forces, and the energy expended or worked down in this way may now,
accordingly, be regarded as stored in the condensed material or liquid
particles in virtue of their new and exalted position above the earth's
surface. It is this energy which is finally transmitted to the
atmospheric air masses. The transmission process is carried out in the
downward movement of the liquid particles. The latter, in their exalted
positions, are at a low temperature corresponding to that position--that
is, corresponding to the work done--and provided no energy were
transmitted from them to the surrounding air masses, their temperature
would gradually rise during the descent by the transformation of this
energy of position. In fact the phenomena of descent, supposing no
transmission of energy from the aqueous material, would simply be the
reverse of the phenomena of ascent. Since, however, the energy of
position which the liquid particles possess is transmitted from them to
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