Steam, Its Generation and UseBabcock & Wilcox Company
History
Steam, Its Generation and Use
Babcock & Wilcox Company
Steam-boilers, Water-tube
2nd. Grate Ratio Possible or Practicable. All fuels have a maximum rate
of combustion, beyond which satisfactory results cannot be obtained,
regardless of draft available or which may be secured by mechanical
means. Such being the case, it is evident that with this maximum
combustion rate secured, the only method of obtaining added capacity
will be through the addition of grate surface. There is obviously a
point beyond which the grate surface for a given boiler cannot be
increased. This is due to the impracticability of handling grates above
a certain maximum size, to the enormous loss in draft pressure through a
boiler resulting from an attempt to force an abnormal quantity of gas
through the heating surface and to innumerable details of design and
maintenance that would make such an arrangement wholly unfeasible.
3rd. Feed Water. The difficulties that may arise through the use of poor
feed water or that are liable to happen through the use of practically
any feed water have already been pointed out. This question of feed is
frequently the limiting factor in the capacity obtainable, for with an
increase in such capacity comes an added concentration of such
ingredients in the feed water as will cause priming, foaming or rapid
scale formation. Certain waters which will give no trouble that cannot
be readily overcome with the boiler run at ordinary ratings will cause
difficulties at higher ratings entirely out of proportion to any
advantage secured by an increase in the power that a definite amount of
heating surface may be made to produce.
Where capacity in the sense of overload is desired, the type of boiler
selected will play a large part in the successful operation through such
periods. A boiler must be selected with which there is possible a
furnace arrangement that will give flexibility without undue loss in
efficiency over the range of capacity desired. The heating surface must
be so arranged that it will be possible to install in a practical
manner, sufficient grate surface at or below the maximum combustion rate
to develop the amount of power required. The design of boiler must be
such that there will be no priming or foaming at high overloads and that
any added scale formation due to such overloads may be easily removed.
Certain boilers which deliver commercially dry steam when operated at
about their normal rated capacity will prime badly when run at overloads
and this action may take place with a water that should be easily
handled by a properly designed boiler at any reasonable load. Such
action is ordinarily produced by the lack of a well defined, positive
circulation.
Relation of Efficiency and Capacity--The statement has been made that in
general the efficiency of a boiler will decrease as the capacity is
increased. Considering the boiler alone, apart from the furnace, this
statement may be readily explained.
Public-domain text, read in full here on John Shaqi.
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