Gas Burners Old and New: A historical and descriptive treatise on the progress of invention in gas lighting, embracing an account of the theory of luminous combustionMerriman, Owen
History
Gas Burners Old and New: A historical and descriptive treatise on the progress of invention in gas lighting, embracing an account of the theory of luminous combustion
Merriman, Owen
Gas-burners
From the cockspur and single jet burners the gas ascended in streams,
rising into the air until it came in contact with sufficient oxygen to
completely consume it. In order that this might take place without
producing a flame of an inordinate length, and without much smoke, the
orifices were restricted to a very small size; and the gas issuing from
these at considerable pressure tended to draw in, and mix with the air
in its course. Besides the loss of illuminating power caused by this
mixture of air with the gas flame (similar to what takes place in a
Bunsen burner), the cooling influence upon the small body of flame of
the mass of metal composing the burner, operated still further to
reduce the quantity of light which the gas was calculated to yield.
With the batswing the gas was spread out producing, when ignited, a
thin sheet of flame, by which means the gas was enabled to combine more
readily with the air necessary to effect complete combustion. The size
of the flame being, in comparison with that of the cockspur, so much
larger proportionately to the metal burner, the cooling effect of the
latter was not so apparent. The increased size of flame, also, of
itself, tended to improve the illuminating power; each portion of flame
contributing to elevate and sustain the temperature of the whole, and
so to heighten the intensity of incandescence to which the light-giving
particles were raised.
[Sidenote: Batswing and Argand burners compared.]
Even with the Argands of that day, the batswing compared not
unfavourably. The former burner, having the regulation of its air
supply under complete control, gives the best results when the gas is
supplied to it at a low pressure; as then the requisite quantity of air
to ensure complete combustion of the gas can be delicately adjusted by
means of a chimney of suitable length. When the gas and air have been
nicely adjusted to each other, the flame becomes extremely sensitive to
any change of pressure in the gas supply; a diminution of the supply,
by reducing the quantity of gas issuing from the burner without at the
same time proportionately diminishing the supply of air, tends to
destroy the illuminating power by the cooling action of the surplus
air; while an increased pressure, by allowing more gas to issue than
the air can consume, causes the flame to smoke. But at the time to
which I now refer the principles of combustion were little understood,
still less applied in the construction of burners. Besides this, the
pressure of the gas in the mains was excessive; and there being no
method adopted of controlling it at the burner, the construction of a
good Argand was, under the circumstances, almost impossible. The
batswing was not so prejudicially affected by an excess of pressure.
Pressure to some extent was, indeed, required to enable the flame to
attain its normal shape; while any excess forced the gas through the
flame without permitting it to be raised to incandescence before being
Public-domain text, read in full here on John Shaqi.
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