Why they continued with this form on their later engines is a question
a little more difficult to answer, as they were then seeking more and
more power and were building larger engines. The advantages of
simplicity and a reduced number of parts still existed, but there also
was a sizable power increase to be had which possibly would have more
than balanced off the increased cost and weight. They did not utilize
mechanical operation until after a major redesign of their last engine
model. Very possibly the answer lies in the phenomenon of fuel
detonation. This was only beginning to be understood in the late
1920s, and it is quite evident from their writings that they had
little knowledge of what made a good fuel in this respect. It is
fairly certain, however, that they did know of the existence of
cylinder "knock," or detonation, and particularly that the compression
ratio had a major effect on it. The ratios they utilized on their
different engines varied considerably, ranging from what, for that
time, was medium to what was relatively high. The original flight
engine had a compression ratio of 4.4:1. The last of their service
engines had a compression ratio about twenty percent under that of the
previous series--a clear indication that they considered that they had
previously gone too high. Quite possibly they concluded that
increasing the amount of the cylinder charge seemed to bring on
detonation, and that the complication of the mechanical inlet valve
was therefore not warranted.
[Illustration: _Figure 6._--First flight engine, 1903, cross section.
(Drawing courtesy Science Museum, London.)]
Public-domain text, read in full here on John Shaqi.
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