Thus, theoretically, is obtained the maximum of energy with the minimum
of expenditure; in practice, however, the scavenging of the power
cylinder, a matter of great importance in all internal combustion
engines, is often imperfect, owing to the opening of the exhaust ports
being of relatively short duration; clearing the exhaust gases out of
the cylinder is not fully accomplished, and these gases mix with the
fresh charge and detract from its efficiency. Similarly, owing to the
shorter space of time allowed, the charging of the cylinder with the
fresh mixture is not so efficient as in the four-stroke cycle type; the
fresh charge is usually compressed slightly in a separate chamber--crank
case, independent cylinder, or charging pump, and is delivered to
the working cylinder during the beginning of the return stroke of the
piston, while in engines working on the four-stroke cycle principle a
complete stroke is devoted to the expulsion of the waste gases of the
exhaust, and another full stroke to recharging the cylinder with fresh
explosive mixture.
Theoretically the two-stroke and the four-stroke cycle engines possess
exactly the same thermal efficiency, but actually this is modified by a
series of practical conditions which to some extent tend to neutralise
the very strong case in favour of the two-stroke cycle engine. The
specific capacity of the engine operating on the two-stroke principle is
theoretically twice that of one operating on the four-stroke cycle, and
consequently, for equal power, the former should require only about half
the cylinder volume of the latter; and, owing to the greater superficial
area of the smaller cylinder, relatively, the latter should be far more
easily cooled than the larger four-stroke cycle cylinder; thus it should
be possible to get higher compression pressures, which in turn should
result in great economy of working. Also the obtaining of a working
impulse in the cylinder for each revolution of the crankshaft should
give a great advantage in regularity of rotation--which it undoubtedly
does--and the elimination of the operating gear for the valves, inlet
and exhaust, should give greater simplicity of design.
In spite of all these theoretical--and some practical--advantages the
four-stroke cycle engine was universally adopted for aircraft work;
owing to the practical equality of the two principles of operation, so
far as thermal efficiency and friction losses are concerned, there is no
doubt that the simplicity of design (in theory) and high power output
to weight ratio (also in theory) ought to have given the 'two-stroke'
a place on the aeroplane. But this engine has to be developed so as to
overcome its inherent drawbacks; better scavenging methods have yet to
be devised--for this is the principal drawback--before the two-stroke
can come to its own as a prime mover for aircraft.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account