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Carrier Aquasnap 30RQ User Manual

Carrier Aquasnap 30RQ
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NOTE:
Units equipped with variable speed drives (30RBP or 30RQP
or option 116V/116W)
If the air temperature is below -10 °C and the unit has been
de-energised for more than 4 hours, it is necessary to wait
two hours after the unit has been switched on again to allow
the variable drive to warm up.
7.2 - Minimum energy transfer uid ow rate
(units without factory-tted hydraulic module)
The minimum heat transfer uid ow rate for di󰀨erent unit sizes 
is given in the tables in paragraph “Water type heat exchanger 
ow rate”.
It is determined in order to allow su󰀩cient exchange and prevent 
the risk of excessive fouling.
If the system ow rate is less than the unit's minimum ow rate, 
the exchanger ow can be recirculated, as shown in the diagram.
B
C
Key
B
Water type heat exchanger
C
Recirculation
7.3 - Maximum energy transfer uid ow rate
(units without factory-tted hydraulic module)
The maximum heat transfer uid ow rate for di󰀨erent unit sizes 
is given in the tables in paragraph “Water type heat exchanger 
ow rate”.
This is limited by the permitted exchanger pressure drop.
In addition, there must be a minimum Delta T of 2.8 K, which
corresponds to a ow rate of 0.09 l/s per kW.
If the system ow rate exceeds the unit's maximum value, it can 
be bypassed as shown in the diagram.
B
C
Key
B
Water type heat exchanger
C
Bypass
7.4 - Variable ow water type heat exchanger
(units without factory-tted hydraulic module)
Avariable water  heat exchanger ow  can be used  in standard 
units. The ow rate must be higher than the minimum ow given 
in the table of permissible ow rates and must not vary by more 
than 10% per minute.
If the ow rate changes more rapidly, the system's water volume 
should be increased and reach a value of at least 6.5 litres of water
per kW.
7.5 - Minimum system water volume
Whichever system, water volume for the water loop (to be provided
between the unit and any customer valves outside the machine) 
is given by the formula
Volume = Cap (kW) x N litres
Application N
Air conditioning – cooling 2,5
Air conditioning – heating 3,0 - 8,0
(1)
Industrial process type cooling 6,5
(1)  Depending on the unit capacity - minimum water loop volume 1300 l
Where “Cap” represents the cooling or heating capacity (kW) under 
the installation's nominal operating conditions. This volume is
necessary for stable operation. It may be necessary to add a bu󰀨er 
water tank to the circuit in order to achieve the minimum volume.
The tank must itself be internally ba󰀪ed in order to ensure proper 
mixing of the liquid (water or brine). Refer to the examples below.
Connection to a bu󰀨er tank
CorrectIncorrect
Incorrect Correct
7.6 - Maximum system water volume
Units with a hydraulic module may include an expansion vessel
which limits the volume in the water loop.
The table below gives the maximum loop volume compatible with
the expansion vessel (for pure water or ethylene glycol depending 
on  the  system's  various  concentrations  and  static  pressures). 
If this volume is less than the volume of the installed loop, then it
is necessary to add an extra expansion vessel within the system.
30RB/RBP or 30RQ/RQP 165R-270R 310R-1040R
Static pressure bar 1 2 2,5 1 2 2,5
Pure water l 2400 1600 1200 3960 2640 1980
10% EG l 1800 1200 900 2940 1960 1470
20% EG l 1320 880 660 2100 1400 1050
30% EG l 1080 720 540 1740 1160 870
40% EG l 900 600 450 1500 1000 750
EG: Ethylene Glycol
7 - APPLICATION DATA
37

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Carrier Aquasnap 30RQ Specifications

General IconGeneral
BrandCarrier
ModelAquasnap 30RQ
CategoryChiller
LanguageEnglish

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