Aeronautics; Aeronautics, Military; World War, 1914-1918 -- Aerial operations
To-day the stationary engine has been greatly improved, its provisions
for cooling have been increased and it is once more looked on with favor
by many manufacturers of aircraft.
The cylinders of an internal combustion engine can be grouped in one of
three ways, and thus there are three main types of airplane engines we
should be able to recognize. They are the _straight-line_ engine, the
_V-type_, and the _radial_. In the straight-line model four, six, or
even a larger number of cylinders are placed in a row in one crank case.
In the V-type of motor they are set instead in two lines, like a letter
V; while in the radial type the cylinders form a circle around the
central crankshaft. The radial motor may be stationary or its cylinders
may revolve, in which case it becomes a rotary engine, as for instance,
the Gnome.
Each of these types of motors has its peculiar advantages. The least
"head resistance" is caused by a straight line engine, and this type
also uses less fuel and oil. But it is usually heavier in weight, owing
to the larger cooling system necessary and the longer crankshaft, and it
takes up more room in the airplane fuselage than a motor of the compact
radial type. The radial engine is very light in weight,--a big item in
the airplane--but it consumes a large quantity of fuel and oil and
besides produces a maximum "head resistance." The V-type motor is a
compromise between the two,--lighter in weight than the straight-line,
less wasteful of fuel and causing less "head resistance" than the
radial.
The rotary engine, because of its appetite for fuel and oil is no longer
used in airplanes which are intended for long distance flights, because
here the weight of the extra fuel carried has to be considered. In short
distance, high-speed machines it works well, but in the larger planes
the vertical or V-type motor has been found to give greater
satisfaction.
When we read of the enormous trouble the pioneers of aviation went to,
in order to find an engine suitable to drive the propeller of the
airplane, we cannot help wondering just how the revolving of the
propeller sends the whole machine flying forward through the air. The
matter is very simply explained. The propeller of a ship is often
referred to as the ship's "screw," and though few people have ever
compared it with the small screws they use about the house, or with the
screw and screw driver in the tool chest, there is in fact very little
difference in principle.
Public-domain text, read in full here on John Shaqi.
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