Flying Machines TodayEnnis, William D. (William Duane)
History
Flying Machines Today
Ennis, William D. (William Duane)
Aeronautics; Flying-machines
Germany has a slight lead in number of dirigible balloons--sixteen
in commission and ten building. France follows closely with fourteen
active and eleven authorized. This accounts for two-thirds of all the
dirigible balloons in the world. Great Britain, Italy, and Russia
rank in the order named. The United States has one balloon of the
smallest size. Spain has, or had, one dirigible. As to aeroplanes,
however, the United States and England rank equally, having each about
one-fourth as many machines as France (which seems, therefore, to
maintain a "four-power standard"). Germany, Russia, and Italy follow,
in order, the United States. These figures include all machines,
whether privately or nationally owned. Until lately, our own government
operated but one aeroplane. A recent appropriation by Congress of
$125,000 has led to arrangements for the purchase of a few additional
biplanes of the Wright and Curtiss types; and a training school for
army officers has been regularly conducted at San Diego, Cal., during
the past winter. The Curtiss machine to be purchased is said to carry
700 pounds of dead weight with a sail area of 500 square feet. It is
completely demountable and equipped with pontoons.
THE QUESTION OF POWER
In the year 1810, a steam engine weighed something over a ton to
the horse-power. This was reduced to about 200 pounds in 1880. The
steam-driven dirigible balloon of Giffard, in 1852, carried a complete
power plant weighing a little over 100 pounds per horse-power; about
the weight of a modern locomotive. The unsuccessful Maxim flying
machine of 1894 brought this weight down to less than 20 pounds. The
gasoline engine on the original Wright machines weighed about 5 pounds
to the horse-power; those on some recent French machines not far from 2
pounds.
Pig iron is worth perhaps a cent a pound. An ordinary steam or gas
engine may cost eight cents a pound; a steam turbine, perhaps forty
cents. A high grade automobile or a piano may sell for a dollar a
pound; the Gnome aeroplane motor is priced at about twenty dollars a
pound. This is considerably more than the price of silver. The motor
and accessories account for from two-thirds to nine-tenths of the total
cost of an aeroplane.
A man weighing 150 pounds can develop at the outside about one-eighth
of a horse-power. It would require 1200 pounds of man to exert one
horse-power. Considered as an engine, then, a man is (weight for
weight) only one six-hundredth as effective as a Gnome motor. In the
original Wright aeroplane, a weight of half a ton was sustained at the
expenditure of about twenty-five horse-power. The motor weight was
about one-eighth of the total weight. If traction had been produced by
man-power, 30,000 pounds of man would have been necessary: thirty times
the whole weight supported.
[Illustration: THE GNOME MOTOR
(Aeromotion Company of America)]
Public-domain text, read in full here on John Shaqi.
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