-
15
-
'11 • KX-T-166
Outdoorair W.B. temperature 18˚CWB
Outdoor air W.B.
temperature -15˚CWB
Outdoor air W.B.
temperature 10˚CWB
Outdoor air W.B. temperature 14˚CWB
Outdoor air W.B. temperature -20˚CWB
Outdoor air W.B. temperature -2˚CWB
Outdoor air W.B. temperature -6˚CWB
Outdoor air W.B. temperature 6˚CWB
Outdoor air W.B. temperature 2˚CWB
Outdoor air W.B. temperature -10˚CWB
16
17
18
19
20
21
22
23
24
Indoor air D.B. temperature(˚CDB)
Power consumption compensation coefficient
0.70
0.75
0.80
0.85
0.90
0.95
1.00
1.05
1.10
1.15
1.20
1.25
◆
Heating
Note (1) The above-mentioned table shows a typical condition among conditions to occur via controlling an air-conditioning equipment.
(c) Correction of cooling and heating capacity in relation to one way length of refrigerant piping.
(Note) This table is for reference only. If the refrigerant piping one way equivalent after the first branch is extended longer than 40 m, it could
drop further by about 10% in the worst case.
1) Cooling
Liquid line:
φ
9.52
Gas line:
φ
19.05
Liquid line:
φ
12.7
Gas line:
φ
22.22
Liquid line:
φ
12.7
Gas line:
φ
25.4
0
0.80
0.85
0.90
0.95
1.00
20
40
60
80 90 100 120 140 160 180
Model : FDCR224KXE6
C
apacity compensation
coefficient
Liquid line:
φ
9.52
Gas line:
φ
22.22
Liquid line:
φ
12.7
Gas line:
φ
25.4
0
0.80
0.85
0.90
0.95
1.00
20
40
90
60
80
100 120 140 160 180
Model : FDCR280KXE6
Capacity compensation
coefficient
Refrigerant piping one way equivalent length (m)
Refrigerant piping one way equivalent length (m)
0
0.90
0.92
0.96
0.94
0.98
1.00
20
40
60
80
100 120 140 160 180
All models
Capacity compensatio
n
coefficient
Refrigerant piping one way equivalent length (m)
2) Heatling
Liquid line:
φ
15.88
Gas line:
φ
28.58
#