Although it has been little used for aircraft propulsion, the
possibilities of the two-stroke cycle engine render some study of
it desirable in this brief review of the various types of internal
combustion engine applicable both to aeroplanes and airships.
Theoretically the two-stroke cycle engine--or as it is more commonly
termed, the ‘two-stroke,’ is the ideal power producer; the doubling
of impulses per revolution of the crankshaft should render it of
very much more even torque than the four-stroke cycle types, while,
theoretically, there should be a considerable saving of fuel, owing
to the doubling of the number of power strokes per total of piston
strokes. In practice, however, the inefficient scavenging of virtually
every two-stroke cycle engine produced nullifies or more than nullifies
its advantages over the four-stroke cycle engine; in many types, too,
there is a waste of fuel gases through the exhaust ports, and much has
yet to be done in the way of experiment and resulting design before
the two-stroke cycle engine can be regarded as equally reliable,
economical, and powerful with its elder brother.
The first commercially successful engine operating on the two-stroke
cycle was invented by Mr Dugald Clerk, who in 1881 proved the design
feasible. As is more or less generally understood, the exhaust gases
of this engine are discharged from the cylinder during the time that
the piston is passing the inner dead centre, and the compression,
combustion, and expansion of the charge take place in similar manner
to that of the four-stroke cycle engine. The exhaust period is usually
controlled by the piston overrunning ports in the cylinder at the end
of its working stroke, these ports communicating direct with the outer
air--the complication of an exhaust valve is thus obviated; immediately
after the escape of the exhaust gases, charging of the cylinder occurs,
and the fresh gas may be introduced either through a valve in the
cylinder head or through ports situated diametrically opposite to the
exhaust ports. The continuation of the outward stroke of the piston,
after the exhaust ports have been closed, compresses the charge into
the combustion chamber of the cylinder, and the ignition of the mixture
produces a recurrence of the working stroke.
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