Stories of Inventors: The Adventures of Inventors and EngineersDoubleday, Russell
History
Stories of Inventors: The Adventures of Inventors and Engineers
Doubleday, Russell
Inventions; Inventors
Water, when it boils and turns into steam or vapour, is heated by or
extracts heat from the fire, but water vapourises at a high temperature
and so cannot be used to produce cold. Other fluids are much more
volatile and evaporate much more easily. Alcohol when spilt on the hand
dries almost instantly and leaves a feeling of cold--the warmth of the
hand boils the alcohol and turns it into vapour, and in doing so
extracts the heat from the skin, making it cold; now, if the evaporated
alcohol could be caught and compressed into its liquid form again you
would have a refrigerating machine.
Alcohol is expensive and inflammable, and many other volatile substances
have been discarded for the one or the other reason. Of all the fluids
that have been tried, ammonia has been found to work most
satisfactorily; it evaporates at a low temperature, is non-inflammable,
and is comparatively cheap.
The hold of the supply-ship mentioned at the head of this chapter was a
vast refrigerator, but no ice was used except that produced mechanically
by the power in the ship. To produce the cold in the hold of the ship it
was necessary to extract the heat in it; to accomplish this, coils ran
round the space filled with cold brine, which, as it grew warm, drew the
heat from the air. The brine in turn circulated through a tank
containing pipes filled with ammonia vapour which extracted the heat
from it; the brine then was ready to circulate through the coils in the
hold again and extract more heat. The heat-extracting or cooling power
of the ammonia is exerted continually by the process described below.
Ammonia requires heat to expand and turn into vapour, and this heat it
extracts from the substance surrounding it. In this marine refrigerating
machine the ammonia got the heat from the brine in the tank, then it was
drawn by a pump from the pipes in the tank, compressed by a power
compressor, and forced into a second coil. The second coil is called a
condenser because the vapour was there condensed into a fluid again.
Over the pipes of the condenser cool water dripped constantly and
carried off the heat in the ammonia vapour inside the coils and so
condensed it into a fluid again--just as cold condenses steam into
water. The compressor-pump then forced the fluid, ammonia through a
small pipe from the condenser coils to the cooling coils in the tank of
brine. The pipes of the cooling coils are much larger than those of the
condenser, and as the fluid ammonia is forced in a fine spray into these
large pipes and the pressure is relieved it expands or boils into the
larger volume of vapour and in so doing extracts heat from the brine.
The pump draws the heated vapour out, the compressor makes it dense, and
the coils over which the cool water flows condenses it into fluid again,
and so the circuit continues--through cooler, pump, compressor, and
condenser, back into the cooling-tank.
Public-domain text, read in full here on John Shaqi.
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