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American Society of Heating and Ventilating Engineers Guide, 1937
Class 3 Stokers, General Commercial, Small High Pressure Plants
The general commercial heating and high pressure plant with boilers burning from 500 lb of coal per hour to 1200 lb of, coal per hour, is a field distinct from the large commercial and industrial field. The pre valent type of stoker employed is the single retort'underfeed side-cleaning type. In this field is found the greatest financial return on stoker invest ments due to the fact that 90 per cent of the fuel is purchased in the retail market where prices are on the'average 40 per cent higher for the same fuel than if the coal were purchased in carload quantities. This is, therefore, an extremely important class of stokers. Savings of 40 per cent to 50 per cent are not at all unusual, and many plants show as much as a 50 per cent return on the investment.
Automatic Stoker Controls
The industry developed by stokers in Classes 1, 2 and 3 has been due as much to the application of proper controls as to the stoker itself, as the types of stokers used in these classes are not basically new, while the industry is distinctly new, originating in 1923. The usual controls applied are as follows:
a. Thermostats (plain and dock). b. Limit Controls (steam, vapor, hot water, etc.).
c. Stack Temperature or Time Controls (for actuating fires periodically). d. Relay (for low voltage controls).
e. Safety or Overload Cutout (for protection against overload).
Class 4 Stokers, Large Commercial. High Pressure Steam Plants
This class includes stokers with grate areas above 36 sq ft and with
hourly burning rates of over 1200 lb of coal per hour. The prevalent
stokers in this field are:
...............
a. Overfeed flat grate stokers. b. Overfeed inclined grate stokers.
c. Underfeed side deaning stokers. d. Underfeed rear deaning stokers.
Overfeed inclined grate stokers are seldom built in sizes of over 500 hp and are not as extensively used as other types of stokers.
Underfeed side-cleaning stokers are made in sizes up to approximately 500 hp and in this field are extensively used. These stokers are not so varied in design as those in the smaller classes although the principle is much the same. Practically all of them are of the front coal feed type, either power driven or steam driven. Dump plates at the side are manually operated. These stokers are heavily built and designed to operate continuously at high boiler ratings with a minimum amount of attention. Because of the fact that all volatile gas must pass through the fire before reaching the combustion chamber, these stokers will operate smokelessly under ordinary conditions. Also because of the fact that these stokers are always provided with forced draft, they are the most desirable type for fluctuating loads or high boiler ratings.
In the design of the grates for supporting the fuel between the retort and the ash plates, the stokers differ in providing for movement of the
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Chapter 28--'Automatic Fuel Burning Equipment
f el during combustion. Some stokers are designed with fixed grates of Efficient angle to provide for this movement as the bed is agitated by the ^coming fuel, while others have alternate moving and stationary bars in
area and provide for this movement mechanically. In either type, 'th proper operation, all refuse will be deposited at the dump plate Recent developments in this type of stoker provide for sliding distributor Hocks along the bottom of the retorts which give flexibility in providing roper distribution of fuel over the grate area and assist in preventing P ke masses when strong coking coals are used. Another difference in these stokers is that some use a single air chamber under the whole grate area thus having the same air pressure under the ignition area as under the rest of the grate, while others have a divided air chamber using the full air pressure under the ignition area and a reduced air pressure under the remainder of the grate. These stokers vary in size from approxi
mately 5 sq ft to a maximum of 8J4 sq ft.
The most prevalent type of rear-cleaning underfeed stoker is the multiple retort design. Occasionally double or triple retort side-cleaning underfeeds are made. The multiple retort underfeed stoker is made for the largest sizes of boilers for large industrial plants and central stations. This stoker has reached a very fine stage of development mechanically and in the matter of air supply and control. In some instances zoned aircontrol has been applied both longitudinally and transversely to the grate surface. Ash dumps on smaller sizes are sometimes manually operated,
Table 1.
Recommended Setting Heights for Heating Boilers Equipped with Mechanical Stokers3
Firebox Boilers
ActaaJ Load 2500 5000 7500 10000 12500 15000 20000 25000 30000
A 18" 18' 20" 20" 22" 22" 24" 24" 24"
B 42" 48" 54" 60" 66" 72"
CO
84" 84"
i = Distance from bottom of Water Leg to floor.
B = Distance from Crown Sheet to bottom of Water Leg.
Compact Welded Boilers
Actual Load 2500 5000 7500 10000 12500 15000 20000 25000 30000
A 18" 18" 20" 20" 22"
ttoo
24" 24" 24"
B . 30" 33" 36" 42" 45" 48" , 54" 60" 60"
A = Distance from bottom of Water Leg to floor.
B = Distance from Crown Sheet to bottom of Wat Leg-
H. R. T. Boilers
Hp 50 - 75 100 125 150 175 200 225 250 275 '300
A S'-O" 5'-6" 6'-0" 6'-6" 7'-0" 7'-0" 7'-6" 8'-0" 8'-6" 9'-0" 9,-0"
A = Distance from bottom of shell to floor.
Hp = Installed horsepower.
In the of the Firebox or Compact Welded type boilers the desired setting height can be obtained by mmbining A and B dimensions. The load ratings shown for this Haas of boilers are actual developed loads in square feet of equivalent cast iron steam radiation and are not manufacturers* ratings.
The setting heights given for-H. R. T. boilers may be used for developed loads up to SO per cent above normal rating.
From Data Prepared by the Midwest Stoker Association.
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