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21
Refrigerant Charge
Any system that has been exposed to the atmosphere must be
properly dehydrated. This is achieved with a proper vacuum
procedure. To achieve a proper vacuum, a VACUUM PUMP (not
a compressor) and a VACUOMETER are required.
The procedure is as follows:
• First of all, the access points to the system must be defined.
For both the low side (suction line) and the high side (liquid
line), use the existing service valves on the condensing
unit, i.e. the high pressure switch, connected to the smaller
diameter pipe, and the low pressure switch, connected to the
larger diameter pipe.
• Once this is done, the system can be evacuated.
Basically, it can be done in two ways:
•
DILUTION METHOD
1. Turn on the vacuum pump and build up vacuum in the pump
(register 1 closed).
2. Open register 1 and let the system evacuate until at least 500
mice are reached. To obtain the measurement, close register
1 and open register 2 and make the vacuum gauge feel the
system pressure. After reaching 500 mice, isolate the vacuum
pump and open register 3, letting the Nitrogen pass through
to break the vacuum. Isolate the Nitrogen tube.
3. Vent the Nitrogen through the connection between the copper
line and register 3.
4. Repeat the operation at least twice, making the third evacua-
tion in the last phase. At the end at least 200 mice should be
obtained.
!
WARNING
!
Never disconnect the copper tubing from register 3, simply
loosen the connection to purge the nitrogen.
To obtain an accurate vacuum value, isolate the vacuum pump
from the system by closing register 1 and waiting about 5 minutes
for an accurate measurement. If the value does not hold, the
system still has moisture or there is a leak. Always check all
connections (points 1, 3 and valves).
• HIGH VACUUM METHOD
1. It is applied with a vacuum pump capable of achieving a va-
cuum of less than 200 microns in a single evacuation. Pro-
ceed as follows:
2. Turn on the vacuum pump and then open the register1 (Fig.
18). Subsequently, isolate the vacuum pump and open the
register1 (fig. 18).
3. When a value of less than 200 microns is obtained (try to
reach the lowest possible value), the vacuum procedure is
finished.
!
WARNING
!
The pump oil should be changed periodically to ensure
vacuum efficiency.
REFRIGERANT CHARGE
EMPTYING PROCEDURE
After evacuating the system properly, close the manifold registers
and isolate the vacuum pump, vacuum gauge and nitrogen tube.
To make the refrigerant gas charge, replace the nitrogen tube
(Figure 18) with a refrigerant gas tube. Purge the hose connecting
the tube to the service valve.
Open the service valve that provides access to the refrigerant gas
tube and then the manifold discharge port.
To properly charge the system, check the unit identification labels
for the amount of refrigerant gas to be added to the system.
With the system stopped, charge the liquid refrigerant gas through
the liquid line service valve (smaller diameter). To assist you, use
a scale (if a graduated tube is not used). Wait at least 10 minutes
before turning on the equipment.
Close the manifold discharge register, open the suction register
and with the system running complete the charge with refrigerant
gas in gas form (5% to 20% of the total). Check on the scale
the weight of the refrigerant gas that was added to the system.
If the charge is complete, close the manifold suction register,
disconnect the suction and discharge hoses and close the pipe
register.
The loading procedure is completed.
If for any reason there is a need to remove/lose refrigerant gas,
the service valves on these units allow the refrigerant gas to be
collected from the system inside the condensing unit.
Procedure:
1. Connect the manifold hoses to the service valve ports of the
condensing unit.
2. Close the 1/4” liquid line service valve.
3. Turn the unit on cool down observing that the system pressu-
res reach 2 psi.
At this time close the 3/8” suction line service valve to allow the
refrigerant gas to be collected.
REFRIGERANT GAS COLLECTION
NOTES: The refrigerant must be adjusted by 20% to reach
the evaporating temperature.
You can check the
charge on the next page.
Содержание Clima-Flex IOM CLIM Series
Страница 13: ...iom clim cf eng www clima flex com 13 Figure 10 CLIM refrigeration schematics Refrigeration Schematics...
Страница 14: ...iom clim cf eng www clima flex com 14 Refrigeration Schematics Figure 11 CLIM heat pump refrigeration schematic...
Страница 15: ...iom clim cf eng www clima flex com 15 Figure 12 CLIM 7 5 Tr Dimensions and Weights Packaged Units...
Страница 16: ...iom clim cf eng www clima flex com 16 Dimensions and Weights Packaged Units Figure 13 CLIM 10 Tr...
Страница 17: ...iom clim cf eng www clima flex com 17 Dimensions and Weights Packaged Units Figure 14 CLIM 12 5 Tr...
Страница 18: ...iom clim cf eng www clima flex com 18 Figure 15 CLIM Dimensions and Weights Packaged Units...
Страница 19: ...iom clim cf eng www clima flex com 19 Figure 16 CLIM heat pump Dimensions and Weights Packaged Units...
Страница 20: ...iom clim cf eng www clima flex com 20 Dimensions and Weights Packaged Units Figure 17 CLIM tandem 50 Tr...
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