Anticipations of the reaction of mechanical and scientific progress upon human life and thoughtWells, H. G. (Herbert George)
History
Anticipations of the reaction of mechanical and scientific progress upon human life and thought
Wells, H. G. (Herbert George)
Civilization; Communication and traffic; Social prediction; Twentieth century -- Forecasts
[4] And also into the Cornwall mines, be it noted.
[5] It might be worse. If the biggest horses had been Shetland ponies,
we should be travelling now in railway carriages to hold two each side
at a maximum speed of perhaps twenty miles an hour. There is hardly any
reason, beyond this tradition of the horse, why the railway carriage
should not be even nine or ten feet wide, the width, that is, of the
smallest room in which people can live in comfort, hung on such springs
and wheels as would effectually destroy all vibration, and furnished
with all the equipment of comfortable chambers.
[6] Explosives as a motive power were first attempted by Huyghens and
one or two others in the seventeenth century, and, just as with the
turbine type of apparatus, it was probably the impetus given to the
development of steam by the convenient collocation of coal and water and
the need of an engine, that arrested the advance of this parallel
inquiry until our own time. Explosive engines, in which gas and
petroleum are employed, are now abundant, but for all that we can regard
the explosive engine as still in its experimental stages. So far,
research in explosives has been directed chiefly to the possibilities of
higher and still higher explosives for use in war, the neglect of the
mechanical application of this class of substance being largely due to
the fact, that chemists are not as a rule engineers, nor engineers
chemists. But an easily portable substance, the decomposition of which
would evolve energy, or--what is, from the practical point of view, much
the same thing--an easily portable substance, which could be decomposed
electrically by wind or water power, and which would then recombine and
supply force, either in intermittent thrusts at a piston, or as an
electric current, would be infinitely more convenient for all locomotive
purposes than the cumbersome bunkers and boilers required by steam. The
presumption is altogether in favour of the possibility of such
substances. Their advent will be the beginning of the end for steam
traction on land and of the steam ship at sea: the end indeed of the Age
of Coal and Steam. And even with regard to steam there may be a curious
change of method before the end. It is beginning to appear that, after
all, the piston and cylinder type of engine is, for locomotive
purposes--on water at least, if not on land--by no means the most
perfect. Another, and fundamentally different type, the turbine type, in
which the impulse of the steam spins a wheel instead of shoving a
piston, would appear to be altogether better than the adapted pumping
engine, at any rate, for the purposes of steam navigation. Hero, of
Alexandria, describes an elementary form of such an engine, and the
early experimenters of the seventeenth century tried and abandoned the
rotary principle. It was not adapted to pumping, and pumping was the
only application that then offered sufficient immediate encouragement to
persistence.
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