The Steam Engine Familiarly Explained and Illustrated: With an historical sketch of its invention and progressive improvement; its applications to navigation and railways; with plain axioms for railway speculatorsLardner, Dionysius
History
The Steam Engine Familiarly Explained and Illustrated: With an historical sketch of its invention and progressive improvement; its applications to navigation and railways; with plain axioms for railway speculators
Lardner, Dionysius
Steam-engines -- Early works to 1850
(88.) The great object to be attained in the construction of these
engines was, to combine with sufficient lightness the greatest
possible heating power. The fire necessarily acts on the water in two
ways: first, by its radiant heat; and, second, by the current of
heated air which is carried by the draft through the fire, and finally
passes into the chimney. To accomplish this object, therefore, it is
necessary to expose to both these sources of heat the greatest
possible quantity of surface in contact with the water. These ends
were attained by the following admirable arrangement in the Rocket:--
[Illustration: _Fig. 55._]
[Illustration: _Fig. 56._]
This engine is represented in fig. 55. It is supported on four wheels;
the principal part of the weight being thrown on one pair, which are
worked by the engine. The boiler consists of a cylinder 6 feet in
length, with flat ends; the chimney issues from one end, and to the
other end is attached a square box, B, the bottom of which is
furnished with the grate on which the fuel is placed. This box is
composed of two casings of iron, one contained within the other,
having between them a space about 3 inches in breadth; the magnitude
of the box being 3 feet in length, 2 feet in width, and 3 feet in
depth. The casing which surrounds the box communicates with the lower
part of the boiler by a pipe marked C; and the same casing at the top
of the box communicates with the upper part of the boiler by another
pipe marked D. When water is admitted into the boiler, therefore, it
flows freely through the pipe C, into the casing which surrounds the
furnace or fire-box, and fills this casing to the same level as that
which it has in the boiler. When the engine is at work, the boiler is
kept about half filled with water; and, consequently, the casing
surrounding the furnace is completely filled. The steam which is
generated in the water contained in the casing finds its exit through
the pipe D, and escapes into the upper part of the boiler. A section
of the engine, taken at right angles to its length is represented at
fig. 56. Through the lower part of the boiler pass a number of copper
tubes of small size, which communicate at one end with the fire-box,
and at the other with the chimney, and form a passage for the heated
air from the furnace to the chimney. The ignited fuel spread on the
grate at the bottom of the fire-box disperses its heat by radiation,
and acts in this manner on the whole surface of the casing surrounding
the fire-box; and thus raises the temperature of the thin shell of
water contained in that casing. The chief part of the water in the
casing, being lower in its position than the water in the boiler,
acquires a tendency to ascend when heated, and passes into the boiler;
so that a constant circulation of the heated water is maintained, and
the water in the boiler must necessarily be kept at nearly the same
temperature as the water in the casing. The air which passes through
Public-domain text, read in full here on John Shaqi.
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