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
However this may be, the difficulty is one which the improved system
of roads in England renders of a comparatively trifling nature. If
horses were resorted to as the means of assistance up such hills as
the engine would be incapable of surmounting, such aid would not be
requisite more than twice or thrice upon the mail-coach road between
London and Holyhead; and the same may be said of the roads connecting
the greatest points of intercourse in the kingdom. Such hills as the
ascent at Pentonville upon the New Road, the ascent in St. James's
Street, the ascent from Waterloo Place to the County Fire Office, the
ascent at Highgate Archway, present no difficulty whatever. It is only
Old Highgate Hill, and hills of a similar kind, which would ever
require a supply of horses in aid of the engine. I therefore incline
to agree with Mr. _Farey_, that, at least for the present, it will be
more expedient to construct carriages adapted to surmount moderate
hills only, and to provide post horses in aid of the extreme
emergencies to which I have just alluded.
(110.) In the boiler to be used in the steam carriage projected by Mr.
_Walter Hancock_, the subdivision of the water is accomplished by
dividing a case or box by a number of thin plates of metal like a
galvanic battery, the water being allowed to flow between every
alternate pair of plates, at E, fig. 66., and the intermediate spaces
H forming the flue through which the flame and hot air are propelled.
[Illustration: Fig. 66.]
In fact, a number of thin plates of water are exposed on both sides to
the most intense action of flame and heated air; so that steam of a
high-pressure is produced in great abundance and with considerable
rapidity. The plates forming the boiler are bolted together by strong
iron ties, extending across the boiler, at right angles to the
plates, as represented in the figure. The distance between the plates
is two inches.
There are ten flat chambers of this kind for water, and intermediately
between them ten flues. Under the flues is the fire-place, or grate;
containing six square feet of fuel in vivid combustion. The chambers
are all filled to about two thirds of their depth with water, and the
other third is left for steam. The water-chambers, throughout the
whole series, communicate with each other both at top and bottom, and
are held together by two large bolts. By releasing these bolts, at any
time, the chambers fall asunder; and by screwing them up they may be
all made tight again. The water is supplied to the boiler by a
forcing-pump, and the steam issues from the centre of one of the flues
at the top.
Public-domain text, read in full here on John Shaqi.
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