_Lothhammer carburator._—Experience has shown that vapour of petroleum
when mixed with air soon separates out; the vaporizer must therefore be
placed as close to the engine as possible. In this motor it has been
the aim of the inventor to obtain an exceedingly perfect mixture of the
explosive gases. In order to do this the air enters the vaporizer near
its base, and passes through it in a number of exceedingly fine streams
of bubbles. The petroleum spirit is at the same time heated by a flame,
and the result is a very close mixture of the gases. The inventor
claims that he thereby obtains much more complete combustion.
_Tenting motor._—M. Tenting has arranged his gas engine, which we
have already described on page 57, for use also as an oil engine. The
carburator is composed of three superposed vessels, through each of
which the oil flows in turn. The upper vessel acts as a reservoir and
will hold a day’s consumption of oil, and the lower one is traversed
by the exhaust pipe, which supplies the heat necessary to obtain the
change of state of the oil from liquid to gas. Although this carburator
is rather crude it gives a very fair practical result.
_Durand carburetted air engine_ (Fig. 27).—M. Durand has set himself to
produce a motor which should work equally well with gas or petroleum,
and which should require a minimum of attention at the same time,
keeping in view such points as regularity of speed, rigidity, economy
of space, and above all low price. This ideal he has, however, failed
to reach, although his engine has many good points. He fails chiefly
because the mechanism is too complicated. The motor works with an
Otto cycle, and the ignition is by an electric spark generated by a
small magneto machine. The regulation of the speed is obtained by
throttling the admission, and the air is drawn through a tube heated
by the waste gases; this arrangement allows a slight economy to be
effected. The carburator is automatic, consisting of a closed cylinder
placed vertically over the motor cylinder. Within it is placed the
oil fuel, and also a spongy mass of cork which soaks up the heavier
impurities found in the oil, and thereby allows cheaper oils to be
used. Air is drawn through the spongy mass, becoming carburetted in the
process; these gases are mixed with a further quantity of pure air in a
distributing chamber before entering the cylinder.
[Illustration: FIG. 27.—Durand Carburetted Air Motor.]
Such a Durand motor sins only by the number of its parts, the
inconvenience of which is noticeable not only by the amount of
lubrication they require, but also by their rapid deterioration.
Public-domain text, read in full here on John Shaqi.
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