Practical Hand Book of Gas, Oil and Steam Engines: Stationary, Marine, Traction; Gas Burners, Oil Burners, Etc.; Farm, Traction, Automobile, Locomotive; A simple, practical and comprehensive book on the construction, operation and repair of all kinds of engines. Dealing with the various parts in detail and the various types of engines and also the use of different kinds of fuel.Rathbun, John B.
Science
Practical Hand Book of Gas, Oil and Steam Engines: Stationary, Marine, Traction; Gas Burners, Oil Burners, Etc.; Farm, Traction, Automobile, Locomotive; A simple, practical and comprehensive book on the construction, operation and repair of all kinds of engines. Dealing with the various parts in detail and the various types of engines and also the use of different kinds of fuel.
Rathbun, John B.
Internal combustion engines; Traction-engines
Fuel oil is supplied to the spray nozzles by a governor controlled pump
having a variable stroke or by compressed air as in the Diesel engine,
making the supply of fire proportional to the load. A separate pump is
generally supplied for each cylinder, which is capable of developing a
pressure of about 400 pounds per square inch. Several of the Semi-Diesel
type engines have water sprayed into the cylinder for the purpose of
cooling the cylinder and piston, and as an aid in the combustion. This
water spray increases the output of a given size cylinder by the amount
of the steam formed by the heat of the cylinder and piston walls, and by
the increased rate of combustion. The amount of water supplied to the
cylinder is equal, approximately to the amount of fuel oil. The water
connection is made in the air intake pipe so that the water spray and
the intake air are drawn into the cylinder at the same time.
There is very little difference in the efficiency of the Diesel and
Semi-Diesel in favor of the true Diesel type for both have accomplished
records of a brake horse-power hour on .45 pound of crude oil in units
of the same capacity. Neglecting the question of efficiency the
Semi-Diesel has many advantages which are due principally to the
differences in compression pressures. Valve and piston perfection in
regard to leakage is not as essential with the semi-type as with the
Diesel, as the former is not dependent on compression for its ignition.
This means that the Semi-Diesel has a lower first cost and a lower
maintenance expense. Its low compression pressure makes starting
possible without the use of compressed air with engines of a
considerable horse-power. As the explosion pressure is much lower than
with the Diesel type there is less strain on the working parts and
lubrication is much more easily performed.
Compared with the ordinary type of kerosene engine the Semi-Diesel is
much more positive in its action as the oil is sure to ignite when
sprayed on the hot surface of the bulb or plate when under the
comparatively high compression. In the engine where the air is mixed
with the vaporized fuel before it is drawn into the cylinder, it is
difficult to obtain perfect combustion because of the uncertain mixtures
obtained on varying loads by the throttling method of governing. At
light loads the only difficulty encountered with the Semi-Diesel type is
that of keeping the igniting surface hot enough to fire all of the
charges.
Public-domain text, read in full here on John Shaqi.
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