'Before making another boiler I obtained a quantity of copper tubes,
about 8 feet long, 3/8 inch external diameter, and 1/50 of an inch
thick. I subjected about 100 of these tubes to an internal pressure of
1 ton per square inch of cold kerosene oil, and as none of them leaked
I did not test any more, but commenced my experiments by placing some
of them in a white-hot petroleum fire. I found that I could evaporate
as much as 26 1/2 lbs. of water per square foot of heating surface per
hour, and that with a forced circulation, although the quantity of water
passing was very small but positive, there was no danger of overheating.
I conducted many experiments with a pressure of over 400 lbs. per square
inch, but none of the tubes failed. I then mounted a single tube in a
white-hot furnace, also with a water circulation, and found that it only
burst under steam at a pressure of 1,650 lbs. per square inch. A large
boiler, having about 800 square feet of heating surface, including the
feed-water heater, was then constructed. This boiler is about 4 1/2 feet
wide at the bottom, 8 feet long and 6 feet high. It weighs, with the
casing, the dome, and the smoke stack and connections, a little less
than 1,000 lbs. The water first passes through a system of small
tubes--1/4 inch in diameter and 1/60 inch thick--which were placed at
the top of the boiler and immediately over the large tubes.... This
feed-water heater is found to be very effective. It utilises the heat
of the products of combustion after they have passed through the boiler
proper and greatly reduces their temperature, while the feed-water
enters the boiler at a temperature of about 250 F. A forced circulation
is maintained in the boiler, the feed-water entering through a spring
valve, the spring valve being adjusted in such a manner that the
pressure on the water is always 30 lbs. per square inch in excess of
the boiler pressure. This fall of 30 lbs. in pressure acts upon the
surrounding hot water which has already passed through the tubes, and
drives it down through a vertical outside tube, thus ensuring a positive
and rapid circulation through all the tubes. This apparatus is found to
act extremely well.'
Thus Maxim, who with this engine as power for his large aeroplane
achieved free flight once, as a matter of experiment, though for what
distance or time the machine was actually off the ground is matter for
debate, since it only got free by tearing up the rails which were to
have held it down in the experiment. Here, however, was a steam engine
which was practicable for use in the air, obviously, and only the rapid
success of the internal combustion engine prevented the steam-producing
type from being developed toward perfection.
Public-domain text, read in full here on John Shaqi.
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