Galien, a French monk, published a book L'art de naviguer dans l'air
in 1757, in which it was conjectured that the air at high levels was
lighter than that immediately over the surface of the earth. Galien
proposed to bring down the upper layers of air and with them fill a
vessel, which by Archimidean principle would rise through the heavier
atmosphere. If one went high enough, said Galien, the air would be two
thousand times as light as water, and it would be possible to construct
an airship, with this light air as lifting factor, which should be as
large as the town of Avignon, and carry four million passengers with
their baggage. How this high air was to be obtained is matter for
conjecture--Galien seems to have thought in a vicious circle, in which
the vessel that must rise to obtain the light air must first be filled
with it in order to rise.
Cavendish's discovery of hydrogen in 1776 set men thinking, and soon a
certain Doctor Black was suggesting that vessels might be filled with
hydrogen, in order that they might rise in the air. Black, however, did
not get beyond suggestion; it was Leo Cavallo who first made experiments
with hydrogen, beginning with filling soap bubbles, and passing on to
bladders and special paper bags. In these latter the gas escaped,
and Cavallo was about to try goldbeaters' skin at the time that the
Montgolfiers came into the field with their hot air balloon.
Joseph and Stephen Montgolfier, sons of a wealthy French paper
manufacturer, carried out many experiments in physics, and Joseph
interested himself in the study of aeronautics some time before the
first balloon was constructed by the brothers--he is said to have made
a parachute descent from the roof of his house as early as 1771, but
of this there is no proof. Galien's idea, together with study of the
movement of clouds, gave Joseph some hope of achieving aerostation
through Galien's schemes, and the first experiments were made by passing
steam into a receiver, which, of course, tended to rise--but the
rapid condensation of the steam prevented the receiver from more than
threatening ascent. The experiments were continued with smoke, which
produced only a slightly better effect, and, moreover, the paper bag
into which the smoke was induced permitted of escape through its pores;
finding this method a failure the brothers desisted until Priestley's
work became known to them, and they conceived the use of hydrogen as
a lifting factor. Trying this with paper bags, they found that the
hydrogen escaped through the pores of the paper.
Public-domain text, read in full here on John Shaqi.
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