Design Technical Manual

Table Of Contents
REFRIGERANT SYSTEM 2
3f 3g
3a
3j
3k
2e
3h
2b
2c
2f
2g
2h
2i 2j 2k 2l 2m
2d
3b
3c3d
3e
3i
2a
1
2
3
5 6 7 8 9 10 11
DX1 DX2
BX1 BX2
RB4
HD1
RB2
RB1
RB3
BX3
AX1
4
Outdoor
unit 1
(Master)
Indoor
unit
Indoor
unit
Indoor
unit
Indoor
unit
(368kBtu/h)
(288kBtu/h)
(192kBtu/h)
Indoor
unit
Indoor
unit
Indoor
unit
Indoor
unit
Indoor
unit
Indoor
unit
Total cooling capacity of indoor units connected downwards to the pipe.
Total cooling capacity of outdoor units connected downwards to the pipe.
Outdoor
unit 2
(Slave1)
Outdoor
unit 3
(Slave2)
(332kBtu/h)
(36kBtu/h)
(188kBtu/h)
(144kBtu/h)
(96kBtu/h)
(48kBtu/h)
(48kBtu/h) (48kBtu/h)
(60kBtu/h) (36kBtu/h) (36kBtu/h)
(56kBtu/h)
(14kBtu/h) (14kBtu/h) (14kBtu/h) (14kBtu/h)
z
System conguration
(Indoor units)
Indoor units 1 2 3 4 5 6 7 8 9 10 11
Total
Capacity
(kW)
Model name AUUB36 ARUH48 ARUH48 ARUH48 ARUH60 AUUB36 AUUB36 AUUA14 AUUA14 AUUA14 AUUA14
368.0
Capacity
(kBtu/h)
36.0 48.0 48.0 48.0 60.0 36.0 36.0 14.0 14.0 14.0 14.0
z
System conguration
(Outdoor units)
Outdoor unit 1
(Master)
Outdoor unit 2
(Slave1)
Outdoor unit 3
(Slave2)
Total Capacity
Model name
AOUA96 AOUA96 AOUA96
24Ton
288.0 (kBtu/h)
Capacity (kBtu/h) 96.0 96.0 96.0
z
Capacity ratio
(Total indoor unit capacity) / (Total outdoor unit capacity)
= (368.0) / (288.0) = 127.8% (Within 50% to 150%)
- (06 - 54) -
SYSTEM
DESIGN
SYSTEM
DESIGN