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72
EVAPORATOR RETUBING
When retubing is required, obtain the service of qualified per-
sonnel experienced in boiler maintenance and repair. Most
standard procedures can be followed when retubing the evapo-
rators. An 8% crush is recommended when rolling replacement
tubes into the tube sheet. Place one drop of Loctite No. 675 or
equivalent on top of tube prior to rolling. This material is in-
tended to “wick” into the area of the tube that is not rolled into
the tube sheet, and prevent fluid from accumulating between
the tube and the tube sheet. New tubes must also be rolled into
the center tube sheet to prevent circuit to circuit leaks.
TIGHTENING EVAPORATOR HEAD BOLTS
Preparation
When reassembling evaporator heads, always check the condi-
tion of the O-rings first. The O-ring should be replaced if there
are visible signs of deterioration, cuts or damage. Apply a thin
film of grease to the O-ring before installation. This will aid in
holding the O-ring in the groove while the head is installed.
Torque all bolts to the following specification and in sequence:
5
/
8
-in. Diameter Perimeter Bolts (Grade 5). . . . 150 to 170 ft-lb
(203 to 230 N-m)
3
/
4
-in. Diameter Perimeter Bolts (Grade 5). . . . 200 to 225 ft-lb
(271 to 305 N-m)
1. Install all bolts finger tight.
2. Bolt tightening sequence is outlined in Fig. 69. Follow the
numbering or lettering sequence so that pressure is evenly
applied to O-ring.
3. Apply torque in one-third steps until required torque is
reached. Load
all
bolts to each one-third step before pro-
ceeding to next one-third step.
4. No less than one hour later, retighten all bolts to required
torque values.
5. After refrigerant is restored to system, check for refrigerant
leaks using recommended industry practices.
6. Replace evaporator insulation.
INSPECTING/CLEANING HEAT EXCHANGERS
Inspect and clean evaporator tubes at the end of the first operat-
ing season. Because these tubes have internal ridges, a rotary-
type tube cleaning system is necessary to fully clean the tubes.
Tube condition in the evaporator will determine the scheduled
frequency for cleaning, and will indicate whether water treat-
ment is adequate in the chilled water/brine circuit. Inspect the
entering and leaving water thermistor wells for signs of corro-
sion or scale. Replace the well if corroded or remove any scale
if found.
Fig. 69 — Flooded Evaporator Unit Head Recommended Bolt Torque Sequence
CAUTION
Hard scale may require chemical treatment for its preven-
tion or removal. Consult a water treatment specialist for
proper treatment procedures.
4
2
6
10
14
1
8
2
3
21
17
15
11
7
3
1
5
9
1
3
17
19
24
22
16
12
8
4
2
6
10
14
15
11
7
3
1
5
9
1
3
16
12
8
24" EVAPORATOR – 5/
8
" BOLT
S
(
3
0XA
3
50M THRU
3
0XA500M)
20" & 1
8
" EVAPORATOR –
3
/4" BOLT
S
(
3
0XA200M THRU
3
0XA
3
50
S
)
4
2
6
10
11
7
3
1
5
9
12
8
16" EVAPORATOR –
3
/4" BOLT
S
(
3
0XA160M THRU
3
0XA200
S
)
4
2
6
10
14
11
7
3
1
5
9
1
3
12
8
14" EVAPORATOR –
3
/4" BOLT
S
(
3
0XA140
S
THRU
3
0XA160
S
)
Содержание AquaForce 30XV140
Страница 79: ...79 Fig 76 VFD Communication Wiring Compressor A B Fan VFD A1 A2 B1 B2...
Страница 82: ...82 Fig 81 VFD Compressor Locations 30XV225 325 30XV350 500 30XV140 325 COMPRESSOR A VFD COMPRESSOR B VFD...
Страница 228: ...228 Fig 90 30XV Typical Field Wiring Schematic cont...
Страница 229: ...229 Fig 91 30XV Standard Tier 140 275 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 230: ...230 Fig 92 30XV Standard Tier 300 325 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 231: ...231 Fig 92 30XV Standard Tier 300 325 All Voltages Power Schematic cont NOTE See Legend on page 226...
Страница 232: ...232 Fig 93 30XV Standard Tier 350 500 380 400 415 440 460 575v Power Schematic NOTE See Legend on page 226...
Страница 233: ...233 Fig 93 30XV Standard Tier 350 500 380 400 415 440 460 575v Power Schematic cont NOTE See Legend on page 226...
Страница 234: ...234 Fig 94 30XV High Tier 350 450 All Voltages Mid Tier 350 500 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 235: ...235 Fig 95 30XV Mid Tier 140 All Voltages 160 275 380 400 415 440 460 575v Power Schematic NOTE See Legend on page 226...
Страница 236: ...236 Fig 96 30XV High Tier 140 200 380 400 415 440 460 575v Power Schematic NOTE See Legend on page 226...
Страница 237: ...237 Fig 97 30XV High Tier 140 200 208 230v Mid Tier 160 200 208 230v Power Schematic NOTE See Legend on page 226...
Страница 238: ...238 Fig 98 30XV High Tier 225 325 All Voltages Mid Tier 300 325 All Voltages Power Schematic NOTE See Legend on page 226...
Страница 240: ...240 Fig 99 30XV Communication Wiring...
Страница 241: ...241 Fig 100 30XV 115V Control Wiring All Tonnages All Voltages...
Страница 242: ...242 Fig 101 30XV 24V Control Wiring 30XV140 325 All Voltages...
Страница 243: ...243 Fig 101 30XV 24V Control Wiring 30XV140 325 All Voltages cont...
Страница 244: ...244 Fig 102 30XV 24V Control Wiring 30XV350 500 All Voltages...
Страница 245: ...245 Fig 102 30XV 24V Control Wiring 30XV350 500 All Voltages cont...
Страница 246: ...246 Fig 103 Component Arrangement Diagram for 30XV140 325...
Страница 247: ...247 Fig 103 Component Arrangement Diagram for 30XV140 325 cont...
Страница 248: ...248 Fig 104 Component Arrangement Diagram for 30XV350 500...
Страница 337: ...337 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig L System Information...
Страница 338: ...338 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig M Unit and Language Settings...
Страница 339: ...339 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig N Hand Off Auto This is set in Auto mode for sensorless operation...
Страница 341: ...341 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig P Data Input 2...
Страница 342: ...342 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig Q Data Input 3...
Страница 347: ...347 APPENDIX J FACTORY SUPPLIED PUMPS cont Fig U Pump Wiring Diagram...