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13 Further technical information
EN
40
Rittal Liquid Cooling Package
Volumetric airflow [m
3
/h]
1200
1300
1300
1300
1300
1300
1300
Air outlet from LCP Hybrid [°C]
24
24
24
24
24
24
24
Air inlet to LCP Hybrid [°C]
36
36
36
36
36
36
36
T air [K]
12
12
12
12
12
12
12
Cooling output, sensible [kW]
5
5
5
5
5
5
5
Inlet temperature [°C]
12
13
14
15
16
17
18
Return temperature [°C]
24
23
23
22
22
22
22
Water volume [l/min]
6
8
9
11
13
16
20
Volumetric airflow [m
3
/h]
1000
1100
1100
1100
1100
1100
1100
Air outlet from LCP Hybrid [°C]
24
24
24
24
24
24
24
Air inlet to LCP Hybrid [°C]
39
39
39
39
39
39
39
T air [K]
15
15
15
15
15
15
15
Tab. 38: Cooling output at partial load and a
T air of 15 K
Cooling output, sensible [kW]
10
10
10
10
10
10
10
Inlet temperature [°C]
12
13
14
15
16
17
18
Return temperature [°C]
19
19.5
20
20
21
21
21.5
Water volume [l/min]
20
22
24
26
30
34
40
Volumetric airflow [m
3
/h]
2400
2400
2400
2400
2500
2500
2500
Air outlet from LCP Hybrid [°C]
24
24
24
24
24
24
24
Air inlet to LCP Hybrid [°C]
36
36
36
36
36
36
36
T air [K]
12
12
12
12
12
12
12
Tab. 39: Cooling output at full load and a
T air of 12 K
Cooling output, sensible [kW]
10
10
10
10
10
10
10
Inlet temperature [°C]
12
13
14
15
16
17
18
Return temperature [°C]
20
20
20
20
21
21
21
Water volume [l/min]
20
22
24
26
30
38
46
Volumetric airflow [m
3
/h]
2100
2100
2100
2100
2200
2200
2200
Air outlet from LCP Hybrid [°C]
24
24
24
24
24
24
24
Air inlet to LCP Hybrid [°C]
39
39
39
39
39
39
39
T air [K]
15
15
15
15
15
15
15
Tab. 40: Cooling output at full load and a
T air of 15 K
Cooling output, sensible [kW]
5
5
5
5
5
5
5
Tab. 37: Cooling output at partial load and a
T air of 12 K