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
Although, in general, both the gas and air supplies are heated, it is
chiefly due to the latter that the beneficial effect noticed is
produced; and this for two reasons. First, because the quantity of air
is so much greater than the gas it is required to consume; being, at
the nearest approach to theoretical perfection, fully six times its
volume. Second, because four-fifths in volume of the air consists of
inert nitrogen, which does not contribute anything to the heat of the
flame, but, when applied in its normal, cold condition, abstracts no
inconsiderable proportion of heat from it. Yet the heating of the gas
itself is not without very appreciable influence. In an ordinary
gas flame there is always an area of non-illumination around, and
extending to a variable distance from the burner head. This is caused
partly by the conduction of heat from the flame by the burner; but, in
a greater degree, by the cooling action of the issuing stream of cold
gas, as is shown by its extending farther from the burner in
proportion to the pressure or velocity with which the gas issues. The
prejudicial effect due to the former is obviated to a great extent by
constructing the burner of steatite, or other non-conducting material.
To remedy the latter, nothing will avail but the heating of the gas
supply.
[Sidenote: Effects of heating the gas and air.]
The effect of heating the gas is to enlarge the area of the
illuminating portion of the flame, and, in a minor degree, to enhance
the intensity of incandescence to which the carbonaceous particles are
raised. When the gas issues from the burner at a temperature little
inferior to the temperature of ignition, the hydrocarbons it contains
are immediately decomposed; the liberated particles of carbon are
raised to the temperature of incandescence; and the illuminating area
of the flame is extended downwards, even to the surface of the burner.
The heating of the air operates chiefly to produce and maintain a more
elevated temperature of the flame; and, in this manner, contributes to
the development of a higher illuminating power from the same area of
flame. In the case of ordinary gas flames, the cold atmosphere by
which they are surrounded, by abstracting heat from the flame,
prevents the most favourable conditions for the development of light
from being attained. When, however, the air immediately surrounding
the flame has been previously heated, the particles of carbon (the
incandescence of which furnishes the desired illuminating power)
attain to a much more exalted temperature; and, consequently, give out
a greater degree of light.
Public-domain text, read in full here on John Shaqi.
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