Discoveries and Inventions of the Nineteenth CenturyRoutledge, Robert
History
Discoveries and Inventions of the Nineteenth Century
Routledge, Robert
Inventions -- History -- 19th century
It is found that when the feed-water is at a temperature
above 120° Fahrenheit, the injector will not work: the condensation of
the steam is therefore necessary to the result. For, as the steam is
continually condensed by the cold water, it rushes from D with the same
velocity as into a vacuum, and the water is urged on by a momentum due
to this velocity. We must observe, moreover, that the net result of the
operation is a lessening of the pressure in the boiler; for the entrance
of the feed-water produces a fall of temperature in the boiler, and the
bulk of steam expended is fourteen times the bulk of the water injected:
thus, although the apparatus before actual trial would not appear likely
to produce the required result, the effect is no more paradoxical than
in the case of the feed-pump. The injector has been greatly improved by
Mr. Gresham, who has contrived to make some of the adjustments
self-acting, and his form of the apparatus is now largely used in this
country. The injector is applicable to stationary, locomotive, or marine
engines.
Steam boilers are now always provided with one of _Bourdon’s_ gauges,
for indicating the pressure of the steam. The construction of the
instrument will easily be understood by an examination of Fig. 7. The
gauge is screwed into some part of the boiler, where it can always be
seen by the person in charge. The stop-cock A communicates with the
curved metallic tube C, which is the essential part of the contrivance.
This tube is of the flattened form shown at D, having its greatest
breadth perpendicular to the plane in which the tube is curved, and it
is closed at the end E, where it is attached to the rod F, so that any
movement of E causes the axle carrying the index-finger, F, to turn, and
the index then moves along the graduated arc. The connection is
sometimes made by wheelwork, instead of by the simple plan shown in the
figure. The front plate is represented as partly broken away, in order
to show the internal arrangement, which, of course, is not visible in
the real instrument, where only the index-finger and graduated scale are
seen, protected by a glass plate.
[Illustration:
FIG. 7.—_Bourdon’s Pressure Gauge._
]
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