Triumphs of Invention and Discovery in Art and ScienceFyfe, J. Hamilton (James Hamilton)
History
Triumphs of Invention and Discovery in Art and Science
Fyfe, J. Hamilton (James Hamilton)
Inventions -- History; Inventors; Technology -- England -- 19th century
Let us take a boiler full of water, and bring it up to boiling point by
means of a furnace. Attach to this boiler a tube, which guides the steam
of the boiler into a hollow metallic cylinder, traversed by a piston
rising and sinking in its interior. It is evident that the steam rushing
through the tube into the lower part of the cylinder, and underneath the
piston, will force the piston, by its pressure, to rise to the top of
the cylinder. Now let us check for a moment the influx of the steam
_below_ the piston, and turning the stopcock, allow the steam which
fills that space to escape outside; and, at the same time, by opening a
second tube, let in a supply of steam _above_ the piston: the pressure
of the steam, now exercised in a downward direction, will force the
piston to the bottom of its course, because there will exist beneath it
no resistance capable of opposing the pressure of the steam. If we
constantly keep up this alternating motion, the piston now rising and
now falling, we are in a position to profit by the force of steam. For
if the lever, attached to the rod of the piston at its lower end, is
fixed by its upper to a crank of the rotating axle of a workshop or
factory, is it not clear that the continuous action of the steam will
give this axle a continuous rotatory movement? And this movement may be
transmitted, by means of bands and pulleys, to a number of different
machines or engines all kept at work by the power of a solitary engine.
This, then, is the principle on which the inventions of Papin, the
Marquis of Worcester, Newcomen, and James Watt have been based.
The great astronomer Huyghens conceived the idea of creating a motive
machine by exploding a charge of gunpowder under a cylinder traversed by
a piston: the air contained in this cylinder, dilated by the heat
resulting from the combustion of the powder, escaped into the outer air
through a valve, whereupon a partial void existed beneath the piston,
or, rather, the air considerably rarified; and from this moment the
pressure of the atmospheric air falling on the upper part of the piston,
and being but imperfectly counterpoised by the rarified air beneath the
piston, precipitated this piston to the bottom of the cylinder.
Consequently, said Huyghens, if to the said piston were attached a chain
or cord coiling around a pulley, one might raise up the weights placed
at the extremity of the cord, and so produce a genuine mechanical
effect.
[Illustration: GENERAL PRINCIPLE OF THE STEAM ENGINE.]
But Experiment, the touchstone of Physical Truth, soon revealed the
deficiencies of an apparatus such as Huyghens had suggested. The air
beneath the piston was not sufficiently rarified; the void produced was
too imperfect. Evidently gunpowder was not the right agent. What was?
Denis Papin answered, Steam. And the first Steam Engine ever invented
was invented by this ingenious Frenchman.
Public-domain text, read in full here on John Shaqi.
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