Aeronautics; Aeronautics, Military; World War, 1914-1918 -- Aerial operations
The coming of the heavier-than-air machine, with its powerful motor, its
bird-like body, its great speed and lifting power, seemed at first to
have driven the balloon from the field as an implement of war. And in
fact, in the early days of the World War the airplane was almost
exclusively employed by the Allies for scouting over the lines, watching
enemy movements, directing artillery fire, and keeping the general staff
informed of the strategic situation.
It was the Hun who first discovered that many of these duties could be
far more efficiently performed by the "kite" or "sausage" balloon--the
drachen balloon, as the Germans called it. This was not originally a
German invention. It was first proposed in 1845 by an Englishman named
Archibald Douglas, but his experiments did not meet with success and the
undertaking was allowed to drop. Two Prussian officers, Major von
Parseval and Captain von Sigsfeld, seizing upon the idea of the kite
balloon as of great military importance, set themselves to developing
it. In 1894 they produced the first drachen balloon, and it was this
that gave the German army at the outbreak of the war one of its greatest
advantages over the Allies.
The chief requirement for any observation balloon is that it shall rest
in the air absolutely steady and motionless, so that the observer may
not be interrupted in his study of the enemy's territory. The spherical
balloon is apt to sway and roll with every puff of wind. The "kite"
balloon therefore is a great improvement. Long and sausage-shaped, it
combines the features of a kite and a balloon. Set at an angle to the
wind, it is supported partly by the gas with which the main envelope is
inflated, and partly by the action of the breeze blowing against its
under surface, exactly as a kite is held in the air.
A smaller balloon, or steering ballonet, as it is called, is attached to
the stern of the kite balloon and acts as a rudder. This ballonet is not
inflated with the gas. It hangs limp while the balloon ascends, but the
breeze quickly rushes into its open end beneath the main envelope and
fills it out. This air-rudder, as it catches the breeze, acts as a
steadier for the balloon. The main envelope has also an air chamber or
section at the rear, which is partitioned off, and which is not filled
with gas but is kept inflated by the action of the breeze; while on
either side of the rudder there are two small rectangular sails, which
help resist any motion of the breeze which might cause the balloon to
sway.
Public-domain text, read in full here on John Shaqi.
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