Flying the Atlantic in Sixteen Hours: With a Discussion of Aircraft in Commerce and TransportationBrown, Arthur Whitten, Sir
History
Flying the Atlantic in Sixteen Hours: With a Discussion of Aircraft in Commerce and Transportation
Brown, Arthur Whitten, Sir
Aeronautics, Commercial; Transatlantic flights
The "Dead Reckoning" position of an aëroplane or airship at any time is
calculated from its known speed and direction over the surface of the
earth or ocean, and its known course as indicated by the magnetic or
gyroscopic compass.
To determine the direction of movement of an aëroplane or airship, as
apart from the direction in which it is headed, an instrument known as
a Drift Indicator, or Drift Bearing Plate, is used.
One form of Drift Indicator consists of a simple dial, with the center
cut away and a wire stretched diametrically across it. The outer edge
of the dial is divided into degrees, in a similar manner to that
of the compass. It is mounted in such a way that an observer can,
by looking through the center of the disc, see the ground or ocean
below him. The disc is then turned until objects on the ground--or
white-caps, icebergs, ships, or other objects visible on the surface
of the ocean--are seen to move parallel with the wire, without in any
way deviating from it. The angle which the wire then makes with the
direction in which the nose of the aëroplane or airship is pointing
gives the angle of drift.
The ground speed (or speed over the surface of the earth) of aircraft
can be measured by observing the time taken in passing over any fixed
or very slowly moving object, while a certain angular distance is
described--this being found by suitable sights, attached to the Drift
Bearing Plate. From the result, considered in conjunction with the
height of the aëroplane or airship, the actual speed over the surface
is calculated. This speed will be in the direction shown by the wire of
the Drift Bearing Plate.
The ground speed so found will differ nearly always from the air speed,
as shown by the air speed meter, because of the effect of the wind. The
difference is greater or less according to the wind's relation to the
direction in which the aëroplane or airship is headed.
Having found by observation the drift, the ground speed and the air
speed, a simple instrument such as the Appleyard Course and Distance
Calculator then permits the aërial navigator to discover without
difficulty, as on a slide rule, the strength and direction of the
wind. Should the actual track of aircraft over the earth's surface not
coincide with the desired course, the Course and Distance Calculator,
or a similar instrument, can thus be used to calculate, in connection
with the wind velocity and direction already found, the direction in
which the nose of the craft must be pointed in order to correct the
deviation due to drift.
[Illustration: THE LATE CAPT. SIR JOHN ALCOCK JUST BEFORE STARTING]
[Illustration: SHIPPING THE FIRST DIRECT TRANSATLANTIC AIR MAIL]
Public-domain text, read in full here on John Shaqi.
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