Document jB80JBqEZ5r3z4Xyzmbywoe3R
KeWANEE, SOILED CORPORATION
KEWANEE, ILLINOIS
Division of AMERICAN RADIATOR & ^tattddpd ^anitdP^ CORPORATION
Eastern District Office, 40 West 40th St., New York City 18
BRANCHES IN 64 CITIES
523
COPYRIGHT 1940 PRINTED IN U. S. A
CATALOG No. 94b
5 40--20
?4'ZS5
28789
STORAGE WATER HEATERS
Kewanee Storage Tank Heaters are used wherever quantities of hot water are required and exhaust or live steam is available,
fSTANDARDas for instance in:
HOTELS
DORMITORIES
OFFICE BUILDINGS
APARTMENT HOUSES PUBLIC BUILDINGS BATH HOUSES
SCHOOLS
HOSPITALS
LARGE RESIDENCES
CLUB BUILDINGS LAUNDRIES
INDUSTRIAL PLANTS
STORAGE TANK HEATERS
STANDARDIZED UNITS Kewanee offers a line of Storage Tank Water Heaters in sizes and pressure classifications which adequately cover all service require ments.
The manufacture has been standardized to keep the costs low, and by eliminating useless duplication in keeping with the present day trend, selection of the proper size and type of Storage Tank Heater is simplified and time is saved.
Thus it is possible to fit any operating con dition with one of these standard units in which all the latest improvements in design and construction are incorporated.
APPLICATION The Kewanee Storage Tank Water Heat er is ideally suited for any installation where hot water is used at irregular intervals. It is designed especially so the water can be heated over a long period. Its ample storage capacity then insures plenty of hot water any time
without producing a peak demand or overload on the boilers or other steam supply.
The success of this heat exchange method
of heating water has been proven thru its
universal adoption by architects and engineers
as the most practical and economical means
of supplying hot water for hotels, laundries,
apartment houses, schools and other applica
tions where hot water is required in large
volume.
OPERATION
The Kewanee Storage Tank Heater con
sists of a tubular heating element inserted in a storage water tank. Steam passing through
the tubes raises the temperature of the water circulating around them.
The storage tank water may be maintained at any required temperature by means of a regulating valve which automatically controls the steam supply. Exhaust steam from pumps and other auxiliaries or live steam from the boilers can be used for heating the coil.
28790
STANDARD STORAGE TANK HEATERS
MATERIALS AND CONSTRUCTION"J
HEATING ELEMENTS
The Kewanee Heating Elements are constructed of heavy gauge copper tubing bent into a U-Bend shape to provide for the expansion of the tubes in service. Tubes are securely rolled into tube sheet and held in place by support plates to prevent vibration and wear. Steam bonnets are of heavy design accurately machined and there are no internal gaskets or joints to leak or give trouble.
The coil element rests securely in place on guides and is easily removable.
The amount of heating surface recommended for any capacity is ample according to standard practice based on laboratory and field tests.
SHELLS
Standard Kewanee Storage Tank Heaters, Non-Code design, are con structed with shell plate and heads of ample thickness or as given in the table below when conforming with A.S.M.E. Boiler Code Formulae for Unfired Pressure Vessels.
REQUIRED THICKNESS
for given working pressure
WELDED STEEL CODE TANKS--TYPE "W"
(All Dimensions are in Inches)
work pressure
ioo lbs.
Shell DIAMETER
Thickness
Shell
Heads
24" /' %"
COo
lA" %'
36" Vi" Vie
w42" Vie"
CO
Vis'
Vz"
54" Vie"
60' %" Ve"
125 Lbs.
Thickness
Shell
HEADS
Vi %'
Vi' Vie'
W
W
Vie
Vz
7.6'
W
Vie
Vt
xxAe" Vi'
150 LBS.
Thickness
Shell
HEADS
74' 7.6"
Vie'
%'
Vie
W Vie Ve
Vz Vie Vie"
xx/ie Vi 1 Vie"
The plate thicknesses shown in the tables above are used by Kewanee in storage tanks for working pressures of 100, 125, 150 lbs. with ample factor of safety, when shell and heads are figured in accordance with the formulae of A.S.M.E. Code for Unfired Pressure Vessels. For given working pressure and a given shell diameter, the thicknesses of shell and heads remain the same regardless of the tank length.
For working pressures higher than listed, refer to the nearest Kewanee representative or the home office,
Kewanee, Illinois.
SUPPORTS
All Kewanee Horizontal Storage Tank Heaters are equipped with supporting cradles. These are designed to distribute evenly the weight of the tank filled with water. Standard cast cradles are provided with cored holes for bolting to standard flange pipe legs furnished by customer, or special saddles to accommodate other anchor supports can be made up at slight additional cost. Steel saddles used on 54" tanks and larger.
4
28791
STANDARD STORAGE TANK HEATERS
KEWANEE
r WELDED STEEL
^CKeewwanee Type "W"
Kewanee Type "W" Welded Storage Heater
TANK
Material--High quality steel plate shell and heads.
Welding-- Electric fusion welded seams.
Openings--Standard handhole or manhole and con nections as shown on page 6.
KEWANEE Welded Steel Storage Tank Heaters Type "W" are furnished in standard sizes as shown in the following pages.
PAINTING
Outside Only--Rust-resisting aluminum paint.
Kewanee Heating Element with Steam Bonnet
HEATING ELEMENT
Material--The heating surface in Kewanee Heat ing Elements is seamless drawn U-Bend copper tubing--134-inch O.D. -- No. 16-gauge; }^-inch space is provided between all tubes at no added cost for extra circulation clearance and the free horizontal pass makes cleaning easier. Steam bonnets are cast iron.
See Page 7 for capacities, construction details and dimensions.
TYPICAL SPECIFICATION
End Section of Heating Element U-Bend IN' Copper Tubing 16-gauge showing full 'j' bridge between each tube and thru clearance for cleaning between rows.
Storage tank heaters shall have shells constructed of high quality steel plate electric fusion welded. Shell and head thickness shall be Kewanee standard or in strict accordance with formulae of A.S.M.E. Code for Unfired Pressure Vessels and designed for a working pressure of...................................lbs. per sq. in. Shells shall be...................." dia. by....................." long with a storage capacity of...................................gallons.
Shell thickness shall be not less than............................." Head thickness shall be not less than.......................... "
Heating element shall contain............. sq. ft. of heat ing surface made up of 1}4" 16-gauge copper U-Bend tubing with x/{ spacing, and have capacity to heat ............. gallons per hour of water from.............. 0 F. to ............. 0 F.with steam at.............. lbs. per sq. in. gauge.
5
28792
i
i
SIZES, CAPACITIES, DIMENSIONS AND CONNECTIONS
Heater NO.
Storage Capacity Gallons
Tank Size AX B
DIA. LGTH.
!
c
D Blow-Off
2404 2405 2406 2407
95 24 x 48 118 24 x 60 141 24 x 72 164 24 x 84
14 14 14 14
24 : 30 ! 36 42
3005 3006 3007 3008
180 30 x 60 215 30 x 72 255 30 x 84 285 30 x 96
16 16 16 16
30 s36 42 48
3606 3607 3608 3609 3610
310 36 x 72 365 36 x 84 415 36 x 96 475 36 x 108 500 36x120
16 16 16 16 16
36 42 48 54 60
4207 4208 4209 4210 4212 4214
500 575 650 720 860 1000
42 x 84 42 x 96 42 x 108 42 x 120 42x144 42x168
16 16 16 16 16 16
42 48 54 60 72 i 84
4810 4812 4814
5410 5412 5414
940 1125 1300
1190 1425 1665
48x120 48x144 48x168
54x120 54x144
54x168
i j
18 18 18
18 18 18
60 72 84
60 ! 72 84
6010 6012 6014 6016
1400 1700 2000 2240
60 x 120 60x144 60 x 168 60x192
20 20 20 20
60 i 72 1 84 96
Sec Price Sheet for weights.
All dimensions in inches.
6
E
24 24 24 24
30 30 30 30
36 36 36 36 36
42 42 42 42 42 42
48 48 48
33 33 33
36 36 36 36
1 0 ] Water Inlet
1 AND OUTLET
i sy :
sv4
B>/ ! 5V4 |
5*/ 1 */* ! 5V4 y
2VZ
2*4 21/2 2%
2V2
2V2 2V* 2V2
BLOW-OFF
1*4 1*4
1 V2
H/2
1V2 1'/2 1'/2 1>/2
Auxiliary Tapping
Size
1 1 1 1
1 1 1 1
5%
53/4
53/4
53/4
53/4 [
63/* i 63/* ! 63/* ! 63/*
63/* I 63/* |
3 3 3
3 3
3 3 3 3
3 3
1*4 1 1'/2 1 1*4 1 1% 1 1*4 1
2 1*4 2 1*4 2 1*4 2 1*4 2 1*4 2 1*4
63/4 63/4 63/4 i
4
4
4
2*4 1 *4 2*4 1*4 2*4 1*4
6 6 6
6i 6 6 6
4 4 4
4
4 4 4
2*4 1*4 2*4 1*4 2*4 1*4
2*4 1*4 2*4 1*4 2*4 1*4 2*4 1*4
Shell openings ASME Code over 125 lb. W. P. and over 3' dia. are flanged nozzles.
l1)
#
t
28793
STANDARD STORAGE TANK HEATERS [ K ) KEWANEE
0
COIL Size
A-- B-- C-- D-- E-- F--
COIL ELEMENT NOZZLE
J Max.
H Flange Bolting
P
DlAM.
No. SIZE
10 12 12 12i/2
14 14
15/l6
,5/l6 ,S/l6
13/l6 15/l6 17/l6
12%
16 19
21%
27 30
12- % 12- % 12--1 20-1% 20-1%
1
00
CIRCLE
11
14% 17 19% 24% 27%
KEWANEE HEATING COIL ELEMENT TUBE SPACE ONE-HALF INCH
COIL SIZE NO.
HEATING CAPACITY G.P.H.
40* TO 180" F.
WITH STEAM AT Atmospheric Pressure
Heating SURFACE in So. Ft.
HORIZONTAL TANK
Minimum Length
H
Outside dia.
tube sheet
L
Length Back of tube Sheet
G
O. D. NECK in Tank
Steam Inlet
CONDENSATE Outlet
A-- 2.5 A-- 5 A -- 10
50 100 200
2.5 5 10
18 30 66
12% 12% 12%
15 30% 61
7% 7% 7%
2 2 2
1 1 1
B -- 15 B -- 20 B -- 25
300
15 56
16
55%
10%
2%
1`/4
400
20 52
16
52%
10%
2%
114
500
25 66
16 66 10% 2% 1'/4
C -- 30 C -- 40
600
30 60
19
61%
12%
4
2
800
40 60
19
57%
12%
4
2
D -- 50 D -- 75 D--100
1000 1500 2000
50 60
21%
62
15
5
2%
75 78
21%
77
15
5
2%
100 102
21%
102%
15
5
2%
E --150 E--200 E --250
F --300
3000 4000 5000
6000
150 200 250
300
90 27 114 27 114 27
102 ,
30
(All Dimensions in Inches)
88
117 113%
102%
19% 19% 19%
22%
8 8
8
10
4 4 4
5
Openings 2\'z and smaller are pipe thread. Larger openings furnished with companion flange.
28794
KEWANEE
STANDARD STORAGE TANK HEATERS
CONVERSION TABLES to determine
capacity oi Kewanee
Heating Elements
Conversion basis is 20 gallons of water heated by one sq. ft. of element surface from 40 to 180 F. in 1 hour, using steam at atmospheric pressure.
The Size of Kewanee Heating Coil for any Hot Water capacity at the desired tem perature is easily determined by using the figures from following tables representing:
GALLONS of WATER heated in 1 hour--
--up to Tank Outlet temperatures from the Inlet water temperatures --by each sq. ft. of Coil Surface with given steam pressures.
For example: to calculate the amount of Coil heating surface required to heat 2,000 gallons per hour of water from 50 F. to 130 F. with steam at 15-lb. gauge pressure:
From the table for 15-lb. steam pressure under the column Inlet Temperature 50 F. opposite Outlet Temperature of 130 F. 82.0 gallons of water will be heated per hour by one sq. ft. of Coil heating surface.
Dividing 2,000 gallons required per hour by 82.0 gives 24.4 sq. ft. total Coil heating surface.
From page 7, select size B-25 heating
element which has 25 sq. ft. of heating surface and a length of 66*.
If the storage tank is at least 66* long, the B-25 heating element is the proper one to use for the above conditions. If the storage tank is only 60* long, a C-30 heating element which has 30 sq. ft. of heating surface and is 60* long is the size to select.
]
j OUTLET TEMP.
40"
GALLONS of WATER per sq. ft. of COIL SURFACE heated per hour
INLET
TEMPERATURE
j50" 60 70" 80 1 90"
100
OUTLET TEMP
40"
INLET
TEMPERATURE
50" J 60
70 | 80"
90
100
0-LB. GAUGE STEAM PRESSURE
100 110 120 130
78.4 64.4 53.6 45.2
140" i 38.6 150 32.8 160 28.0 170 23.8
180 190" 200
20.0 16.3 12.6
91.4 72.6 59.4 49.4
41.4 35.0 29.6 24.8
20.8 16.8 12.9
110.4
84.2
67.0 54.4
1 141.0
101.8
i 77.4 ! 61.2
45.0 49.6 37.4 40.6 31.4 33.4 26.2 i 27.6
21.4 17.3 13.2
22.5 18.0 13.5
204.0 130.4
93.0 70.4
394.0 188.0 119.0 84.4
. 360.0 j 172.0 1 108.0
55.4 44.4 36.1
29.4
63.6 ! 49.6 :
| 39.2
| 31.4 '
76.2 56.8 43.8
34.2
23.7 j 25.1 18.7 19.6
14.0 | 14.5
26.8 20.6 15.0
2-LB. GAUGE STEAM PRESSURE
100" 110 120" 130"
140" 150" 160" 170"
180" 190" 200
88.4 72.6 71.0 51.6
44.1 37.8 32.6 27.9
23.7 19.9 16.2
103.0 82.1 67.4 56.2
50.4 40.4 34.3 29.2
24.6 20.5 16.6
124.6 95.4 76.0 62.1
51.5 43.3 36.4 30.7
25.7 21.3 17.1
161.0 115.0
88.0 71.1
56.8 47.0 39.0 32.5
27.0 22.1 17.6
230.4 148.2 106.0
81.0
452.0 216.2 135.6
97.0
63.9 51.6 42.1 34.7
73.6 57.8 46.2 37.4
28.5 30.3
23.1 24.2 18.2 1 19.0
414.0 195.8 123.8
88.0 66.3 51.5 40.8
32.4 25.7 19.8
5-LB. GAUGE STEAM PRESSURE
100" i 110" 1
120" 1
130"
93.0 76.6
64.2 54.6
108.2 1 87.4
1 71.4 , 59.8
i 131.4 1 101.6
' 81.0 ; 66.4
140" 150 160 170
47.0 40.4 35.0 30.2
50.8 i 55.2 43.2 : 46.8 37.1 1 39.5 31.8 j 33.4
180" 190" 200
26.0 22.2 18.6
27.2 j 28.4 23.0 ! 23.9
19.2 | 19.8
170.6 122.8
94.2 74.6
247.0 158.4 114.2 86.8
468.0 229.0 145.8 104.6
440.0 212.0 133.2
61.2 50.4 42.4 35.6
68.6 80.0 55.6 i 62.4 45.8 | 50.4 38.2 ! 41.0
95.2 72.2 56.4 45.2
29.9 j 31.6 24.9 | 26.2 :
20.5 | 21.3
33.8 j 36.4 27.6 i 29.2
22.2 ! 23.4
10-LB. GAUGE STEAM PRESSURE
100" 110" 120 130"
117.4 ' 97.2
82.0 70.2
136.6
110.6 91.2 74.6
| 167.4 | 216.0
r 129.0 155.6 103.6 j 119.4 84.8 1 95.8
317.0 203.0 145.4 112.0
604.0 290.0 188.2 134.6
566.0 268.0 172.8
140" 60.2 150 1 52.4 160" 1 45.7 170" 39.7
64.8 56.0 48.2
41.8
| 70.8 60.2
| 51.6
; 44.4
| 78.4 I 65.8 I 55.6
j 47.0
88.8 72.6 60.2 50.4
102.8 82.0 66.2 54.6
123.6 94.4 74.4 60.2
180" j 34.8 1 36.6 | 38.0 ! 40.2 j 42.4 190 1 30.1 | 31.3 ! 32.6 j 34.1 j 35.8
200 j 25.9 j 26.7 | 27.6 j 28.8 | 30.0 210 1 22.0 1 22.5 i 23.2 23.9 1 24.8
45.4 49.2 37.9 1 40.4
31.5 j 33.2 25.8 27.0
15-LB. GAUGE STEAM PRESSURE
100 110" 120" 130"
124.8 103.6 87.0
75.2
145.2 117.2
97.2 82.0
176.8 136.4 111.0
91.4
230.0 167.6
129.0 103.6
332.0 216.0 155.8 120.0
648.0 310.0 203.0 145.2
620.0 '
292.0 188.0
140" 150" 160" 170"
65.0 56.6 49.6 43.4
70.2 60.4 52.4 45.6
76.6 65.2 56.0 48.4
84.8 71.0 60.8 51.6
96.0 79.0 66.0 55.4
112.0 88.8 72.8 60.8
135.0 103.6
82.0 66.8
180 190" 200 210
38.2 33.4 29.2
25.2
39.8 34.8 30.4 26.0
42.0 36.2 31.3 26.8
44.2 38.2 32.6 27.8
47.2 40.2 34.3 29.0
50.8 42.6 36.0 30.1
54.8 45.6 38.2 31.7
20-LB. GAUGE STEAM PRESSURE
100 110" 120" 130
130.4 109.2
92.0 79.2
153.0 123.4 102.6 87.2
188.0 143.6 117.4
96.4
242.0 176.0 136.6
109.0
358.0 230.0 164.8 127.8
i 686.0 332.0
i 211.0 j 155.6
|............ 648.0 310.0 j 199.0
140 150 160 170
69.0 60.2 52.6 48.6
74.4 64.4 56.2 49.2
81.4 | 90.6 69.6 ! 75.8 59.8 j 65.0 52.0 55.4
102.6 84.4 70.8 59.8
119.6 96.0 78.2 65.4
I 143.4 111.0
! 88.2 j 72.2
180 190 200" 210"
41.0 36.3 32.0 28.0
43.0 37.8 33.2 28.9
45.2 39.4 34.4 29.9
48.0 41.4 36.0 31.0
51.2 44.0 37.8 32.4
55.2 1 59.8 46.8 ! 50.2
39.8 42.4 33.8 : 35.6
i
28795
STANDAE? TORAGE TANK HEATERS
K EWAN EE
GALLONS of WATER per sq. ft. of COIL SURFACE heated per hour
; OUTLET !
INLET TEMPERATURE
TEMP. !
: 40 50 60 70 80 90 100
25- LB. GAUGE STEAM PRESSURE
100 | 156.0 110 i 131.6 120 110.4 130 i 94.8
183.2 157.8
122.4 104.2
223.0 172.6
139.4 115.6
290.0
212.0 164.0 131.6
424.0 276.0
201.0 152.2
824.0 394.0
258.0 188.0
82.6 89.4 98.0 119.6 123.4 144.6
150" 1 72.4 77.4 84.0 92.0 102.0 115.8 160 i 64.0 67.8 72.4 78.8 85.8 95.2 170 56.6 59.6 63.0 67.4 73.0 79.8
180 ; 50.0 52.4 55.4 58.6 62.6 67.4
190 ! 44.4 46.4 48.4 51.0 54.0 57.6
200 1 38.4 210 J 34.7
40.8 35.9
42.4 37.2
44.6 38.6
46.8 40.4
49.4 42.2
772.0 378.0 242.0
175.6 134.0 108.0 88.0
73.6 62.0 52.4 44.6
100" 110 120 130 140 150 160 1 /U" 180 190 200 210
100 110 120 130 140 150 160 170 180 190 200 210
30-LB. GAUGE STEAM PRESSURE
162.0 134.2 114.6 98.4
85.8 75.4 66.8 58.8
52.6 46.8 41.8 37.0
188.2 154.4 128.0 101.0
93.6 81.0 71.2 62.6
55.4 48.8 43.4 38.3
232.0 180.6 146.0 121.2
102.0 88.0 76.0 66.4
58.6 51.6 45.2 39.8
306.0 219.0 171.0 137.0
114.0 96.6 82.6 71.4
62.0 54.2 47.4 41.6
440.0 289.0 208.0 160.0
129.0 107.2 90.4 77.0
66.4 57.4 49.8 43.4
868.0 424.0 270.0 194.4
150.6 121.6 100.2 84.0
71.6 61.2 53.0 46.2
40- LB. GAUGE STEAM PRESSURE
173.0 144.6 122.6 105.8
92.4 81.6 72.2 64.2
57.4 51.2 45.8 41.2
201.0 164.0 136.8 116.4
101.0 87.6 76.8 67.8
60.2 53.8 47.8 42.6
246.0 191.2 156.0 129.0
110.4 94.8 82.4 72.4
64.0 56.2 50.0 44.4
324.0 232.0 183.2 147.2
122.6 103.4 89.4 77.2
67.8 59.4 52.4 46.2
460.0 306.0 224.0 172.8
139.6 116.6 98.2 84.0
72.6 63.2 55.2 48.4
946.0 448.0 290.0 212.0
164.0 131.4 109.6 92.0
78.8 65.4 58.6 51.0
824.0 393.0 252.0
183.2 142.4 114.0 93.6
78.0 66.0 56.2 48.0
868.0 424.0 276.0
201.0 152.9 123.8 102.2
85.8 73.0 62.8 54.0
' INLET TEMPERATURE
i TEMP
40 50 60 70 80 i 90 , 100
60- LB. GAUGE STEAM PRESSURE
100 1 188.0 1 224.0 1 270.0 1 353.0 i 520.0 i 1024.0 110 1 158.0 180.4 i 215.0 i 264.0 344.0 504.0 120 ! 134.0 150.4 172.8 i 201.0 252.0 324.0 130 ; 116.4 . 129.0 ; 144.0 S 164.0 194.2 236.0
140 j 102.2 150 90.4 160 ! 81.0 170 ; 72.0
111.0 i 122.6
97.0 ! 106.6
85.8 92.6
76.0 81.8
137.0 116.6
101.0 87.6
156.4 130.4
110.6 94.6
183.0 149.0
123.4 105.0
180 i 64.6 68.4 72.2 77.2 82.6 89.4 190 58.2 60.8 64.2 68.4 72.4 77.6 200 52.6 54.8 57.4 60.6 64.0 67.8 210 j 47.4 49.4 51.6 53.8 56.6 60.0
.....
984.0 572.0 306.0
224.0 162.8 139.6 116.6
98.2 84.0 73.0 63.6
80- LB. GAUGE STEAM PRESSURE
100 201.0 110 168.4 120 146.0 130 126.0 140 110.4 150 98.2 160 1 87.6 170 78.0 180 70.8 190 64.0 200 58.0 210 ! 52.6
236.0 194.2 162.0 139.6
120.4 106.0 93.6 83.2
74.8 67.0 60.6 54.8
290.0 228.0 186.0 156.0
133.4 114.6 101.0 89.0
79.2 70.8 63.4 57.0
378.0 276.0 220.0 178.0
149.0 127.0 109.8 95.8
84.6 74.8 66.8 59.8
556.0 366.0 264.0 208.0
1090.0 540.0 344.0 252.0
1046.0 514.0
336.0
168.2 142.6 120.4 104.4
201.0 162.0 134.0 114.6
242.0 188.2 152.4 128.4
90.4 98.0 109.0 80.2 85.8 93.6 70.8 75.4 81.0
63.0 66.4 71.0
100-LB. GAUGE STEAM PRESSURE
100 216.0 110 ! 178.8 120 1 153.6 130 134.4 140 117.4 150 104.0 160 93.0 170 83.6 180 75.4 190 68.4 200 62.4 210 56.8
252.0 204.0 172.8 146.0
128.0 113.0 99.6 89.4
79.6 72.0 65.2 59.2
306.0 242.0 194.4 164.0
141.2 122.6 108.0 95.2
85.0 76.0 68.2 62.0
400.0 298.0 224.0 188.0
158.0 135.6 117.2 103.0
91.0 81.0 72.4 64.8
588.0 392.0 282.0
224.0
1226.0 568.0 366.0 269.0
1170.0 556.0 354.0
180.6 152.4 129.0 111.0
215.0 172.8 144.0 122.6
264.0 204.0
164.0 137.0
98.0 106.4 116.6 86.2 92.4 101.0 76.8 81.8 88.0
68.4 72.4 77.2
50-LB. GAUGE STEAM PRESSURE
100 183.2 216.0 110 151.4 172.8 120 1 129.0 146.0 130 ! 108.6 123.4
!
140 98.2 106.4 150 86.8 93.0 160 76.8 | 81.6 170 68.4 ; 72.4
180 190 200 1 210 j
61.2 j 64.8
55.2 | 57.6
49.4 51.6
44.6 46.4
264.0 201.0 164.0 136.8
344.0 252.0 194.4 156.0
504.0 324.0 236.0 183.2
966.0 472.0 306.0 223.0
912.0 452.0 290.0
116.4 101.0 87.6 77.2
131.6 111.2 96.0 83.2
149.0 124.8
105.0 90.4
172.8 | 212.0
141.2 164.0 116.4 133.0
99.0 109.6
68.4 I 72.8 ; 78.0 85.0 1 92.6 60.6 1 64.4 1 68.4 73.0 ; 78.8 54.0 ! 56.8 ; 59.8 j 64.0 ' 67.8 48.2 j 50.2 , 53.0 j 55.6 i 59.0
125- LB. GAUGE STEAM PRESSURE
100 224.0 110 188.2 120 ' 164.0 130 142.6
140 124.6 150 111.2 160 ! 99.6 170" 89.2
180 | 190 i 200 210 |
81.0
73.6 67.4 61.2
264.0 216.0 183.4 156.0
137.0 120.4 106.4 94.8
85.8 77.2 70.4 64.0
324.0 252.0 208.0 175.2
149.0 131.8 114.6 102.0
91.4 81.8 74.0 66.8
424.0 314.0 248.0 201.0
168.4 144.0 124.8 109.8
97.0 86.8 78.0 70.4
624.0 408.0 306.0 238.0
1260.0 624.0 392.0
290.0
1226.0 582.0 380.0
194.2 162.0 138.2 120.4
228.0 185.2
156.0 131.4
276.0 216.0 178.0 149.0
105.0
93.0 83.2 74.2
114.8
101.0 88.6 79.2
127.0 109.6 94.8 84.0
9
28796
KEWANEE
STANDARD STORAGE TANK HEATERS
HOT WATER REQUIRED
lor fixtures of various types of buildings
J
The table below indicates the quantity of hot water at 180 F. which it is customary to allow for various fixtures in different types of buildings. These quantities have been compiled on the basis of maximum demand and in the bottom two lines of the table are shown the average heating capacity and average storage capacity that should be provided.
Maximum Gallons of Hot Water per Hour per Fixture
TYPE OF BUILDING
FIXTURE
Apart
ment
house
Club
Depart ment Dorm Store itory
Ga Gym Hos
rage nasium pital
Hotel
Indus
OFFICE
trial Laun BUILD PUBLIC resi School
Plant dry
ING BATH dence
PANTRY SINK..
10 20
20 20
KITCHEN SINK.............
10 20
20 30 20
SLOP SINK..................................................... 20 20 20 15
20 30 20 20
WASH BASIN (PRIVATE).................................... 3 3 3 3 3 3 3 3 3 3
WASH BASIN (PUBLIC)....................................
5
8
8 10 12 12
8 10 15 20
BATH TUB........................................................... 15
15
30
30 15 15 30
SHOWER BATH.............................................
50 200 100 200 150 200 100 100 200
LAUNDRY TUB (STATIONARY) . ..
25 35
35
40 40
40
LAUNDRY TUB (REVOLVING) ..................... 75
75
100
120 150
150
WASH RACKS...............................
30
50
40 30
10 20
.. 10 10
15 15 15 20
3333
10 15
18
40 15
200 50 200
...........
100
25
75
!
DISH WASHER . . . 300 Gallons per hour for serving capacity 500 people
AVERAGE HEATING CAPACITY COMPARED TO MAXIMUM DEMAND................................
AVERAGE STORAGE CAPACITY COMPARED TO MAXIMUM DEMAND.................................
80% 80% 60% ! 50% 90%. 100% 20% 100% i 50% ; 30^ 75$ 75$ 50% I 60% 50% j 50% ; 30% , 50% 30% 100% i 50% j100% ! 50%
Typical Example--an apartment house with the following fixture and exhaust
steam available at atmospheric pressure.
20 Kitchen Sinks..................................................................................... (ft 10 -- 200 gals./hr.
4 Slop Sinks............................................................................................ (ft, 20 = 80 gals./hr.
20 Private Wash Basins.................................................................... (ft, 3=
60 gals./hr.
20 Bath Tubs............
(ft 15 = 300 gals./hr.
10 Shower Baths...............................
(Vi 50 = 500 gals./hr.
6 Laundry Tubs (Stationary)............................................................ (ft 25 = 150 gals./hr.
1 Wash Rack......................
(ft 30 -- 30 gals./hr.
Total Maximum Hourly Demand........................................................ 1320 gals./hr. 30% Heating Capacity.............................................................................. = 396 gallons per hr. 100% Storage Capacity................................................................................. = 1320 gallons per hr.
Select a Kewanee Size 4814 Storage Tank Heater, 1,300 gallons storage capacity equipped with a Kewanee B-20 Heating Element which, from table page 7, is
capable of heating 400 gallons per hour of water 40 to 180 with steam at 0 1b. gauge.
10
28797
<K>
STANDARD STORAGE TANK HEATERS
KEWANEE
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z o:
i
d
h
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60
70
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111
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-120 *-
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-40,000
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6,000 5.000
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izn 3.000 o 2,500
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2,000
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000
600
Q 700
hin 600 5o
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300
a -25o in 200
! -l5o
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-9,000 - 5,000 - 7,000 - 6,000 5,ooo
-4)000
3.500 3,ooo 2.500
--Z.ooo
--z --iS,p
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UJ tooo *- 900
-900
Ik - TOO
O - 600
> Soo
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D
35o - 300
O' -250
So -1 so
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0
KU L-6i*
5 -5"
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-3"
J -z'f-r
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N -1'
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5
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60
70
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SO 100
<Z -125
ul ISO
ft -ITS ZOO
STEAM LINE REQUIRED
how to determine size
NOTE: READ SIZE OF STEAM LINE ABOVE POINT OF INTERSECTION
i- 100
By the use of the above chart, the size of steam supply line required for any size of storage tank heater can be easily determined.
For example--to determine the size of the steam line required for a storage tank heater to heat 1000 G.P.H. of water from 40 to 190 F. with steam at 50-lb. gauge.
A straight line drawn through 150 water rise on column A and 1000 gallons per hour of water heated on column B intersects column C at 1300, this indi cates that 1300-lb. per hour of steam is required. Another straight line drawn through the 1300-lb.
per hour point on column C thus determined and 50-lb. per sq. in. steam pressure on column E crosses column D at a point that indicates a lYi steam line is required.
The value of the 1300-lb. per hour of steam re quired as determined from column C is most useful to check the load on the boiler or other steam supply.
To insure best regulation always install a temperature regulator one size smaller than the steam supply line as indicated by the above chart.
FOR EFFICIENT OPERATION BE SURE THAT CONDENSATE DISCHARGE AND STEAM TRAP ARE OF
AMPLE SIZE AND CAPACITY
11
28798
Kpwaneb
STORAGE WATER
HEATERS
CATALOG No. 94