Steam, Its Generation and UseBabcock & Wilcox Company
History
Steam, Its Generation and Use
Babcock & Wilcox Company
Steam-boilers, Water-tube
Loss in Furnace--The draft loss in the furnace or through the fuel bed
varies between wide limits. The air necessary for combustion must pass
through the interstices of the coal on the grate. Where these are large,
as is the case with broken coal, but little pressure is required to
force the air through the bed; but if they are small, as with bituminous
slack or small sizes of anthracite, a much greater pressure is needed.
If the draft is insufficient the coal will accumulate on the grates and
a dead smoky fire will result with the accompanying poor combustion; if
the draft is too great, the coal may be rapidly consumed on certain
portions of the grate, leaving the fire thin in spots and a portion of
the grates uncovered with the resulting losses due to an excessive
amount of air.
[Graph: Force of Draft between Furnace and Ash Pit--Inches of Water
against Pounds of Coal burned per Square Foot of Grate Surface per Hour
Fig. 34. Draft Required at Different Combustion Rates for Various Kinds
of Coal]
Draft Required for Different Fuels--For every kind of fuel and rate of
combustion there is a certain draft with which the best general results
are obtained. A comparatively light draft is best with the free burning
bituminous coals and the amount to use increases as the percentage of
volatile matter diminishes and the fixed carbon increases, being highest
for the small sizes of anthracites. Numerous other factors such as the
thickness of fires, the percentage of ash and the air spaces in the
grates bear directly on this question of the draft best suited to a
given combustion rate. The effect of these factors can only be found by
experiment. It is almost impossible to show by one set of curves the
furnace draft required at various rates of combustion for all of the
different conditions of fuel, etc., that may be met. The curves in Fig.
34, however, give the furnace draft necessary to burn various kinds of
coal at the combustion rates indicated by the abscissae, for a general
set of conditions. These curves have been plotted from the records of
numerous tests and allow a safe margin for economically burning coals of
the kinds noted.
Rate of Combustion--The amount of coal which can be burned per hour per
square foot of grate surface is governed by the character of the coal
and the draft available. When the boiler and grate are properly
proportioned, the efficiency will be practically the same, within
reasonable limits, for different rates of combustion. The area of the
grate, and the ratio of this area to the boiler heating surface will
depend upon the nature of the fuel to be burned, and the stack should be
so designed as to give a draft sufficient to burn the maximum amount of
fuel per square foot of grate surface corresponding to the maximum
evaporative requirements of the boiler.
Public-domain text, read in full here on John Shaqi.
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