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(16)-4 PQRY-P400YHM Piping
IF more than 16 ports are in use, or if there is more than one BC controller in use for two heat source units
(Connection with standard CITY MULTI indoor units, PWFY-P100VM-E-BU, PWFY-P100/200VM-E-AU)
Table16-4-1. Piping length limitation
(m [ft.])
Table16-4-2. Bent equivalent length "M"
Item
Piping in the figure
Max. length
Max. equivalent length
Heat source Model M (m/bent [ft./bent])
Total piping length
F+G+H+A+B+C+D+E+a+b+c+d+e+f
*1
-
P400YSHM
0.50 [1.64']
Farthest IU from HU
F(G)+A+C+E+f
165 [541']
190 [623']
P450YSHM
0.50 [1.64']
Distance between HU and BC
F(G)+A
110 [360'] *1
110 [360'] *1
P500YSHM
0.50 [1.64']
Farthest IU from BC controller
B+d or C+D+e or C+E+f
40 [131'] *2*3
40 [131'] *2*3
P550YSHM
0.50 [1.64']
Heignt between HU and IU (HU above IU)
H
50 [164']
-
P600YSHM
0.50 [1.64']
Heignt between HU and IU (HU under IU)
H'
40 [131']
-
Height between IU and BC
h1
15 [49'] (10 [32']) *4
-
Height between IU and IU
h2
15 [49'] (10 [32']) *4
-
Heignt between BC(Main or Sub) and BC(Sub) h3
15 [49'] (10 [32']) *5
-
Distance between Main unit and Sub unit
F+G or H
5 [16']
-
Height between Main unit and Sub unit
h4
0.1 [0.3']
-
Fig. 16-4-1 Piping length and height between IU and BC controller
Table16-4-3. Piping "A"size selection rule
(mm [in.])
Heat source Model
Pipe(High pressure)
Pipe(Low pressure)
P400YSHM
ø22.20 [7/8"]
ø28.58 [1-1/8"]
P450YSHM
ø22.20 [7/8"]
ø28.58 [1-1/8"]
P500YSHM
ø22.20 [7/8"]
ø28.58 [1-1/8"]
P550YSHM
ø28.58 [1-1/8"]
ø28.58 [1-1/8"]
P600YSHM
ø28.58 [1-1/8"]
ø28.58 [1-1/8"]
Table16-4-4. Piping "B" size seleciton rule
(mm [in.])
Total down-stream Indoor capacity
Pipe(Liquid)
Pipe(Gas)
P140 or less
ø9.52 [3/8"]
ø15.88 [5/8"]
Table16-4-5. Piping "C", "D", "E" size selection rule
(mm [in.])
Total down-stream Indoor capacity
Pipe(Lequid)
Pipe(HP Gas)
Pipe(LP Gas)
P200 or less
ø9.52 [3/8"]
ø15.88 [5/8"]
ø19.05 [3/4"]
P201 to P300
ø9.52 [3/8"]
ø19.05 [3/4"]
ø22.20 [7/8"]
P301 to P350
ø12.70 [1/2"]
ø19.05 [3/4"]
ø28.58 [1-1/8"]
P351 to P400
ø12.70 [1/2"]
ø22.20 [7/8"]
ø28.58 [1-1/8"]
P401 to P450
ø15.88 [5/8"]
ø22.20 [7/8"]
ø28.58 [1-1/8"]
HP : High pressure, LP:Low pressure
Table16-4-6. Piping "F", "G", "H" size selection rule
(mm [in.])
Table16-4-7. Piping "a", "b", "c", "d", "e", "f" size selection rule (mm [in.])
Heat source Model Pipe(High pressure)
Pipe(Low pressure)
Indoor Unit size
Pipe(Lequid)
Pipe(Gas)
P200YHM
ø15.88 [5/8"]
ø19.05 [3/4"]
P15 to P50
ø6.35 [1/4"]
ø12.70 [1/2"]
P250YHM
ø19.05 [3/4"]
ø22.20 [7/8"]
P63 to P140
ø9.52 [3/8"]
ø15.88 [5/8"]
P300YHM
ø19.05 [3/4"]
ø22.20 [7/8"]
P200
ø9.52 [3/8"]
ø19.05 [3/4"]
P250
ø9.52 [3/8"]
ø22.20 [7/8"]
HU : Heat source Unit ; IU : Indoor Unit ; BC : BC controller
*1. Refer to the section (16)-5.
*2. Details refer to Fig.16-4-1
*3. Farthest Indoor from BC controller "B+d or C+D+e or C+E+f " can exceed 40m till 60m if no Indoor sized P200, P250 connected. Details refer to Fig.16-4-1
*4. Distance of Indoor sized P200, P250 from BC must be less than 10m, if any.
*5. When using 2 Sub BC controllers, max. height "h3" should be considered.
0
10
20
30
40
50
60
70
0
5
10
15
Height difference between the main BC controller
and farthest indoor unit (m)
P
ipe length betw
een the m
a
in B
C
contr
oller
and far
thest indoor
unit (
m
)
BC controller (Main BC)
IU
a
IU
C
b
H
H'
h1
h1
IU
(P15-P80)
(P100-P250)
CMY-R160-J1
(Joint)
IU
CMY-Y102S-G
(Joint)
Max.3 sets for 1 port.
Total capacity < = P80
BC controller (Sub BC)
BC controller (Sub BC)
B
c
d
IU
f
h3
D
E
CMY-Y202-G2
CMY-Y102L-G2
CMY-Y102S-G2
(Joint)
A
IU
e
h1
F
H
h4
IU : Indoor unit
Heat source Twinning kit (High/Low press.)
CMY-Q100VBK:
The Low press. kit is set in the Main unit ;
The High press. kit is to be installed in the field.
Main unit
Sub unit
Reducer (P15-P50)
(attached with BC controller)
G
h2
Note1. No Header usable on PQRY system.
Note2. Indoor unit sized P100-P250 should be connected to BC controller via Y shape joint CMY-R160-J1 ;
Note3. Indoor unit sized P100-P250 does NOT share BC controller ports with other Indoor units ;
Note4. As bents cause pressure loss on transportation of refrigerant, fewer bents design is better ;
Piping length needs to consider the actual length and equivalent length which bents are counted.
Equivalent piping length (m)=Actual piping "M" x Quantity of bent.
However, the cooling capacity decreases a little (For details, refer to the chapter HEAT SOURCE UNITS,
WR2 SERIES, 3-(10). Correction by port counts of the BC controller).
Note5. Set DIP-SW 4-6 to ON of BC controller, in case of connected Indoor unit sized P100-P140 with 2 ports.
Note6. It is also possible to connect Indoor unit sized P100-P140 with 1 port (set DIP-SW 4-6 to OFF).
Note7. Individual indoor units grouped together to connect to the BC controller via one port cannot operate individually
in heating and cooling modes at the same time. I.e., they must all function in either heating or cooling together.
Note8. For sub BC controller CMB-P
•
V-GB1 the connectable indoor unit capacities may sum to equal that of a
P350 unit or less. However, if two sub controllers are used the TOTAL sum of connectable units
connected to BOTH sub controllers must also not exceed that of a P350 unit.
For sub BC controller CMB-P1016V-HB1 the connectable indoor unit capacities may sum to equal that
or a P350 unit or less. However, if two sub controllers are used the TOTAL sum of connectable units
connected to BOTH sub controllers must also not exceed that of a P450 unit.
Note9. Indoor capactiy is described as its model size. For example, PEFY-P63VMA-E, its capacity is P63.
Note10. Total down-stream Indoor capacity is the summary of the model size of Indoors down-stream.
For example, PEFY-P63VMA-E + PEFY-P32VMA-E : Total Indoor capacity = P63 + P32 = P95.
S
T
M
N
CMY-R160-J1
(Gas side)
IU
CMY-R160-J1
(Liquid side)
BC controller
Fig. 16-4AA
Fig. 16-4A Piping scheme
(T)ø19.05ID
(N)ø9.52ID
(M)ø3/8"(Brazing)
(M)ø3/8"(Brazing)
(S)ø5/8"(Brazing)
Joint CMY-R160-J1 Gas side
Joint CMY-R160-J1 Liquid side
(S)ø5/8"(Brazing)
226
226
Содержание PQHRY-P250YHM-A
Страница 1: ...DATA BOOK AIR CONDITIONERS MODEL PQHY P Y S HM A PQRY P Y S HM A For ground source application ...
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