Steam, Its Generation and UseBabcock & Wilcox Company
History
Steam, Its Generation and Use
Babcock & Wilcox Company
Steam-boilers, Water-tube
| 156 |132.73|4190| 4393| 4684| 5131| 5542| 5925| 6285| 6624| 138 |
| 168 |153.94|4878| 5115| 5454| 5974| 6454| 6899| 7318| 7713| 150 |
|______|______|____|_____|_____|_____|_____|_____|_____|_____|_______|
Kent's Stack Tables--Table 55 gives, in convenient form for approximate
work, the sizes of stacks and the horse power of boilers which they will
serve. This table is a modification of Mr. William Kent's stack table
and is calculated from his formula. Provided no unusual conditions are
encountered, it is reliable for the ordinary rates of combustion with
bituminous coals. It is figured on a consumption of 5 pounds of coal
burned per hour per boiler horse power developed, this figure giving a
fairly liberal allowance for the use of poor coal and for a reasonable
overload. When the coal used is a low grade bituminous of the Middle or
Western States, it is strongly recommended that these sizes be increased
materially, such an increase being from 25 to 60 per cent, depending
upon the nature of the coal and the capacity desired. For the coal
burned per hour for any size stack given in the table, the values should
be multiplied by 5.
A convenient rule for large stacks, 200 feet high and over, is to
provide 30 square feet of cross sectional area per 1000 rated horse
power.
Stacks for Oil Fuel--The requirements of stacks connected to boilers
under which oil fuel is burned are entirely different from those where
coal is used. While more attention has been paid to the matter of stack
sizes for oil fuel in recent years, there has not as yet been gathered
the large amount of experimental data available for use in designing
coal stacks.
In the case of oil-fired boilers the loss of draft through the fuel bed
is partially eliminated. While there may be practically no loss through
any checkerwork admitting air to the furnace when a boiler is new, the
areas for the air passage in this checkerwork will in a short time be
decreased, due to the silt which is present in practically all fuel oil.
The loss in draft through the boiler proper at a given rating will be
less than in the case of coal-fired boilers, this being due to a
decrease in the volume of the gases. Further, the action of the oil
burner itself is to a certain extent that of a forced draft. To offset
this decrease in draft requirement, the temperature of the gases
entering the stack will be somewhat lower where oil is used than where
coal is used, and the draft that a stack of a given height would give,
therefore, decreases. The factors as given above, affecting as they do
the intensity of the draft, affect directly the height of the stack to
be used.
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