Document qaaV930dk07XZGxGNqknmDyrG
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CHAPTER 28
1954 Guide
service interruptions which may result from frozen water in pipes, it is essential that an efficient insulation be utilized. This table is based on
the use of a material having a conductivity of 0.30. The initial water tem perature is assumed to be 10 deg above, and the surrounding air temperature 50 deg below, the freezing point of water (temperature difference, 60 F).
The last column of Table 9 gives the minimum quantity of water at initial temperature of 42 F which should be supplied every hour for each linear foot of pipe, in order to prevent the temperature of the water from -
being lowered to the freezing point. The weights given in this column should be multiplied by the total length of the exposed pipe line expressed in feet. As an additional factor of safety, and in order to provide against temporary reductions in flow occasioned by reduced pressure, it is ad-
Table 8. Heat Gains fob Insulated Cold Pipes Rates of heat transmission given in Bin per (hour) (Fahrenheit degree temperature
difference between fluid in pipe and surrounding still air) .
Based on materials having conductivity, k = 0.S0
Nominal Pipe Size
(Inches)
H
2
23M
3X 4.
56
8 10 12
Ice Water Thickness
Thickness of
Insulation (Inches)
Btu Per Linear Foot
Btu Per Sq Ft Pipe Surface
1.5 0.110 0.502 1.6 0.119 0.431 1.6 0.139 0.403 1.6 0.155 0.357 1.5 0.174 0.351 1.5 0.200 0.322 1.5 0.228 0.303 1.5 0.269 0.293 1.5 0.295 0.282
0.248 1.7 0.349 0.239 1.7 0.404 0.233 1.9 0.455 0.201 1.9 0.559 0.198 1.9 0.648 0.194
Brine Thickness
Thickness of
Insulation (Inches)
Btu Per Linear Foot
Btu Per Sq Ft Pipe Surface
2.0 0.098 0.446 2.0 0.111 ! 0.405 2.0 0.124 0.352 2.4 0.131 0.300 2.5 0.134 0.270 2.5 0.151 0.244 2.6 0.170 0.226 2.7 0.186 0.202 2.9 0.191 0.183 2.9 0.209 0.176 3.0 0.241 0.165 3.0 0.259 0.150 3.0 0.318 0.140 3.0 0.383 0.135 3.0 0.438 0.131
Heavy Brine Thickness
Thickness of
Insulation (Inches)
Btu Per Linear Foot
Btu Per Sq Ft Pipe Surface
2.8 0.087. 0.394
2.9 0.094 0.340
3.0 0.104 0.294
3.1 3.2
0.113 0.118
0.260 0.238
3.3 3.3
0.134 0.147
0.214 0.197
3.4 0.162 0.176
3.5 3.7
0.176 0.182
0.167 0.154
3.9 4.0
0.202 0.228
0.138 0.130
4.0 0.263 0.116
4.0 0.309 0.110
4.0 0.364 0.108
visable to double the rates of flow listed in the table. It must be empha sized that the flow rates and periods of time designated apply only for the conditions stated. To estimate for other service conditions, the following
method of procedure may be used. If water enters the pipe at 52 F instead of 42 F, the time required to
cool it to the freezing point will be prolonged to twice that given in the table, or the rate of flow of water may be reduced so that the quantity required will be one-half that shown in the last column of Table 9. How ever, if the water enters the pipe at 34 F, it will be cooled to 32 F in onefifth of the time given in the table. It will then be necessary to increase the rate of flow so that five times the specified quantity of water will have
to be supplied in order to prevent freezing. If the minimum air temperature is -- 38 F (temperature difference 80 F)
instead of --18 F, the time required to cool the water to the freezing point will be 60/80 of the time given in the table, or the necessary quantity of
water to be supplied will be 80/60 of that given. In making calculations to arrive at the values given in Table 9, the
loss of heat stored in the insulation, the effect of a varying temperature difference due to the cooling of pipe and water, and the resistance of
Pipe Insulation
637
Table 9.
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Water in Pipes with Surrounding Air at --18 F
Nominal
Pipe Size (Inches)
i
Number of Hours to Cool 42 F Water to Freezing Point
Water Flow Required at 42 F to
Prevent Freezing, Pounds per Linear Foot of Pipe per Hour
1*
3 4
5 6 8 1.20
Thickness of Insulation in Inches (Conductivity, k = 0.30)
2
0.42
0.83
1.40
1.94
3.25
4.55
5.92
7.35
10.05
|
13.00 15.80
3
0.50 1.02 1.74 2.48 4.27 6.02 7.96 9.88 13.90 18.10 22.20
4 12
0.57 1.16 2.02
2.90 5.08 7.20 9.69 12.20 17.25 22.70 28.10
0.54 0.68 0.84
0.95 1.24 1.47
1.73
1.98 2.46 2.96
3.43
3
0.45 0.55 0.68 0.75 0.94 1.11 1.29 1.46 1.78 2.12 2.45
4
0.40 0.48 0.58 0.64 0.79 0.93 1.06 1.19 1.43 1.70 . 1.93
t,ne outer surface of the insulation to the transfer of heat to the air, have all been neglected; When these factors enter into the computations it is
necessary to enlarge the factor of safety. Also as stated, the time shown . in the table is that required to lower the water to the freezing point. A longer period would be required to freeze the water, but the danger point is reached when freezing starts. The flow of water will stop and the entire line will be in danger as soon as the water freezes across the section of the pipe at any point.
When water must remain stationary longer than- the times designated in Table 9, the only safe way to insure against freezing is to install a
steam or hot water line, or to place an electric resistance heater along the side of the exposed water line. The heating system and the water, line are then insulated so that the heat losses from the heating system are not
excessive, and the heating effect is concentrated against the water pipe where it is needed. For this form of protection 2 in. of an efficient insu lation may be applied.
______ VA' AT irji iilOUUlilV/ri
The thicknesses of insulation which ordinarily are used for various temperature conditions are given in Table 10. Where a thorough analysis of economic thickness is desired, this may be accomplished through the use of the chart, Fig- 6.
The . dotted line on the chart illustrates its use in solving a typical
Table 10. Thickness of Pipe Insulation Ordinarily Used Indoors*
Steam Pressure Psig
or Condition
0to 25 25 to 100 _ 100 to 200 Superheat Medium Superheat High Superheat
Steam Temperature Fahrenheit Degrees
212 to 267 267 to 338 338 to 388 388 to 500 500 to 600 600 to 700
Thickness of Insulation
Pipes Larger Than 4 In.
1 in. IX in.
2 in. 2X in.
3 in. 3X in.
Pipes 2 In. to
4 In.
1 in. 1 in. IH in. 2 in. 2Min. . 3 in.
Pipes H In. to IX In.
1 in. 1 in. 1 in. IX in. 2 in. 2 in.
"tdoom or xpo.3d to wMaxU A- jj.Ay in^ua this table, and covered with a waterproof jackal.
i to a thic.;njss
: in. greater thm