
2
2
- 14
Design of 3-WAY FLOW LOGIC
1. Model Selecting and Capacity Calculator
■
■
Graph of indoor unit capacity characteristics (2 – (2))
■
■
Graph of capacity change characteristics resulting from tubing length and elevation difference (1 / 2 – (3))
Rate of cooling capacity change (%)
Indoor unit cooling capacity characteristics
Indoor unit heating capacity characteristics
indicates the rating point.
indicates the rating point.
Indoor air intake temp. (°C WB)
Rate of heating capacity change (%)
Indoor air intake temp. (°C DB)
120
110
100
90
80
110
105
100
95
90
14 15 16 17 18 19 20 21 22 23 24 25
15 16 17 18 19 20 21 22 23 24 25 26
27
<Cooling>
Ele
v
a
tion diff
erence (m)
Base capacity
change rate
Base capacity
change rate
*1
92
90 88 86 84 82 80 78 76
94
96
98
100
%
0 10 20 30 40 50 60 70 80 90 100
110
120 130
140 150
50
40
30
20
10
0
–10
–20
–30
–40
94 93 92 91 90 89 88 87 86 85 84
Equivalent length (m)
The positive side for the elevation difference indicates that the outdoor unit is installed at a higher position than the
indoor units. The negative side indicates the opposite.
Equivalent length (m)
Equivalent length (m)
Elevation dif
ference (m)
Base capacity
change rate
96
98
100
%
0 10 20 30 40 50 60 70 80 90 100
110
120 130
140 150
10 20 30 40 50 60 70 80 90 100
110
120 130
140 150
–40
50
40
30
20
10
0
–10
–20
–30
–40
94 93 92 91 90 89 88 87 86 85 84
95
97
99
<Heating>
●
The capacity loss that is caused by the tubing length can be reduced by increasing the sizes of the discharge
tubes and suction tubes. Refer to Table 1 and make the appropriate changes. However be sure that the total
length does not exceed the maximum.
* The only sizes which can be increased are the LM (main tube with the largest diameter) discharge tubes and
suction tubes, and the changes are limited to those shown in Table 1.
In addition, note that the additional refrigerant charge is determined only by the narrow-tube size.
Table 1. Equivalent Length Correction Coefficient when the Size of the Discharge Tubes and Suction Tubes
(LM) is Increased
Standard tubing diameter
(discharge tube, mm)
Tubing diameter after
change (suction tube, mm)
Equivalent length
correction coefficient
φ
12.7
φ
15.88
φ
19.05
φ
22.22
φ
25.4
φ
28.58
φ
31.75
φ
38.1
φ
41.28
φ
38.1
φ
15.88
φ
19.05
φ
22.22
φ
25.4
φ
28.58
φ
31.75
0.4
0.5
0.6
0.7
* If the size of the discharge tubes and suction tubes (LM) have been increased, apply the
correction coefficient from Table 1 and calculate the equivalent length of the LM section.
Equivalent length of tubing after size increase
= Standard tubing equivalent length
×
Equivalent length correction coefficient
04-218 Airwell-2.qxp 01/06/2007 13:16 Page 14
Содержание EFL 100-3R410
Страница 300: ...6 6 15 Electrical Data 2 Indoor Unit Schematic Wiring Diagram ST NWFL 24 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 15...
Страница 306: ...6 6 21 Electrical Data 2 Indoor Unit Schematic Wiring Diagram ST NDHP 24 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 21...
Страница 308: ...6 6 23 Electrical Data 2 Indoor Unit Schematic Wiring Diagram ST NDHP 36 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 23...
Страница 310: ...6 6 25 Electrical Data 2 Indoor Unit Schematic Wiring Diagram ST NDHP 48 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 25...
Страница 312: ...6 6 27 Electrical Data 2 Indoor Unit Schematic Wiring Diagram ST NDHP 76 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 27...
Страница 314: ...6 6 29 Electrical Data 2 Indoor Unit Schematic Wiring Diagram ST NDHP 96 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 29...
Страница 315: ...6 6 30 Electrical Data 2 Indoor Unit 8 Electric Wiring Diagram ST NDHP 96 04 218 Airwell 6 qxp 01 06 2007 13 23 Page 30...