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
In this comparison, the engine is taken at its most advantageous
speed, while horse-power is taken at its least advantageous speed, if
regard be only had to the total quantity of weight transported to a
given distance. But, in the case above alluded to, speed is an
indispensable element; and steam, therefore, possesses this great
advantage over horse power, that _its most advantageous speed is that
which is at once adapted to all the purposes of transport, whether of
passengers or of goods_.
(100.) The effects of steam compared with horse-power, at lower rates
of motion, will exhibit the advantages of the former, though in a
less striking degree. An eight-horse wagon commonly weighs 8 tons, and
travels at the rate of 2-1/2 miles an hour. Strong horses working in
this way can travel 8 hours daily; thus each horse performs 20 miles a
day. The performance, therefore, of each horse may be taken as
equivalent to 20 tons transported 1 mile; and his performance on a
railway being 20 times this amount, may be taken as equivalent to 400
tons transported 1 mile a day. The performance of a horse working in
this manner is, therefore, 5 times the performance of a horse working
at 10 miles an hour; the latter effecting only the performance of 4
tons transported 1 mile per day on a good turnpike road, or 80 tons on
a railway. We shall hence obtain the proportion of the performance of
horses working in wagons to that of a locomotive steam engine. Since 2
lbs. of coke are equivalent to the daily performance of a horse in a
mail-coach, and 40 lbs. on a railway, at 10 miles an hour, it follows
that 10 lbs. will be equivalent to the performance of a horse on a
turnpike road, and 200 lbs. on a railway, at 2-1/2 miles an hour.
Since a locomotive engine can perform the daily work of 7500
mail-coach horses, it follows that it performs the work of 1500 wagon
horses.
These results must be understood to be subject to modifications in
particular cases, and to be only average calculations. Different
steam-engines, as well as different horses, varying in their
performance to a considerable extent; and the roads on which horses
work being in different states of perfection, and subject to different
declivities, the performance must vary accordingly.
Public-domain text, read in full here on John Shaqi.
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