Cooling And Airflow - GE AF-600 FP Operating Instructions Manual

Fan and pump drive 460v/575v 150hp and above
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Mechanical Installation

4.3.6 Cooling and Airflow

Cooling
Cooling can be obtained in different ways, by using the
cooling ducts in the bottom and the top of the unit, by
taking air in and out the back of the unit or by combining
the cooling possibilities.
Duct cooling
A dedicated option has been developed to optimize instal-
lation of IP00/chassis drive types in Rittal TS8 Units
utilizing the fan of the frequency converter for forced air
cooling of the backchannel. Please consult GE for more
details.
The air out the top of the Unit could but ducted outside a
facility so the heat loses from the backchannel are not
dissipated within the control room reducing air-
conditioning requirements of the facility.
Please contact GE for more information.
Back cooling
The backchannel air can also be ventilated in and out the
back of a Rittal TS8 Unit. This offers a solution where the
backchannel could take air from outside the facility and
Unit Size protection
IP21 / NEMA 1
IP54 / NEMA 12
IP21 / NEMA 1
IP54 / NEMA 12
IP00 / Chassis
* Airflow per fan. Unit Sizes 5X contain multiple fans.
Table 4.3 Heatsink Air Flow
AF-600 FP High Power Operating Instructions
Unit Size
41 and 42
51 350HP @ 460 V, 500 & 550 HP
@ 690 V
51 450-550 HP @ 460V, 650-750
HP @ 690 V
61, 62, 63 and 64
61, 62, 63 and 64
43 and 44
52 350 HP @ 460V, 500 & 550 HP
@ 690 V
52 450-550 HP @ 460V, 650-750
HP @ 690 V
return the heat loses outside the facility thus reducing air-
conditioning requirements.
CAUTION
A door fan(s) is required on the enclosure to remove the
heat losses not contained in the backchannel of the drive
and any additional losses generated from other
components installed inside the enclosure. The total
required air flow must be calculated so that the
appropriate fans can be selected. Some enclosure
manufacturers offer software for performing the
calculations (i.e. Rittal Therm software). If the drive is the
only heat generating component in the enclosure, the
minimum airflow required at an ambient temperature of
o
45
C for the 43 and 44 unit size drives is 391 m
cfm). The minimum airflow required at an ambient
o
temperature of 45
C for the 52 drive is 782 m
Airflow
The necessary airflow over the heat sink must be secured.
The flow rate is in Table 4.3.
Door fan(s) / Top fan airflow
3
170 m
/h (100 cfm)
3
340 m
/h (200 cfm)
3
340 m
/h (200 cfm)
3
700 m
/h (412 cfm)*
3
525 m
/h (309 cfm)*
3
255 m
/h (150 cfm)
3
255 m
/h (150 cfm)
3
255 m
/h (150 cfm)
3
/h (230
3
/h (460 cfm).
Heatsink fan(s)
3
765 m
/h (450 cfm)
3
1105 m
/h (650 cfm)
3
1445 m
/h (850 cfm)
3
985 m
/h (580 cfm)*
3
985 m
/h (580 cfm)*
3
765 m
/h (450 cfm)
3
1105 m
/h (650 cfm)
3
1445 m
/h (850 cfm)
61
4
4

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