27
7.2 - Minimum heat transfer fluid flow rate (units
without factory-fitted hydraulic module)
The minimum heat-transfer fluid flow rate is given in the
paragraph "Water exchanger min. water volume and flow
rate".
If the system flow rate is less than the unit's minimum flow
rate, the exchanger flow can be recirculated, as shown in the
diagram.
For a minimum heat-transfer fluid flow rate
Key
1
Water type heat exchanger
2 Recirculation
If the system flow rate is less than the minimum flow rate, there
may be a high fouling risk.
7.3 - Maximum heat transfer fluid flow rate (units
without factory-fitted hydraulic module)
The minimum heat-transfer fluid flow rate is given in the
paragraph "Water exchanger min. water volume and flow rate".
If the system's flow exceeds the unit's maximum value, it can be
bypassed as shown in the diagram.
For a maximum heat-transfer fluid flow rate
Key
1
Water type heat exchanger
2 Recirculation
It is limited by the allowable pressure drop for the water
exchanger.
Furthermore, it must ensure a minimum ΔT in the water
exchanger of 2.8 K, which corresponds to a flow rate of 0.09
l/s per kW.
7.4 - Variable flow evaporator (units without factory-
fitted hydraulic module)
A variable water heat exchanger flow can be used in standard
units. The flow rate must be higher than the minimum flow
given in the table of permissible flow rates and must not vary
by more than 10% per minute.
If the flow rate changes more rapidly, the system should contain
a minimum of 6.5 litres of water per kW instead of 2.5 l/kW.
7.5 - System minimum water volume
Whichever the system, the water loop minimum volume is
given by the formula
Volume = Cap (kW) x N litres
Application
N
Normal air conditioning
2,5
Process type cooling
6,5
Connection to a buffer tank
Correct
Incorrect
Incorrect
Correct
7.6 - System maximum 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.
Maximum water loop volume (litres)
30RBM/30RBP
160-260
300-520
Static pressure (bar)
1
2
2,5
1
2
2,5
Pure water
2400 1600 1200
3960
2640
1980
10% EG
1800 1200
900
2940 1960 1470
20% EG
1320
880
660
2100 1400 1050
30% EG
1080
720
540
1740
1160
870
40% EG
900
600
450
1500 1000
750
EG:
Ethylene Glycol
Summary of Contents for 30RBM 160
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