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GREE GMV5 HR HEAT RECOVERY UNITS
66
5.2.1
Branch selection of indoor unit of mode exchanger (“C1”)
R410A refrigerant system
capacity of down steam indoor units: X (Btu/h)
Model
Y-type branch
48500<
X≤96000
FQ01B/A
5.2.2 Piping size between mode exchanger and downstream indoor unit
(“m”)
Size of connection pipe between indoor branch and indoor unit should be consistent with the
connection pipe of indoor unit.
Piping between indoor branch and indoor unit
“
m
”.
Rated capacity of indoor units
(Btu/h)
Size of connection pipe between indoor branch and indoor unit
Gas pipe mm(in.)
Liquid pipe mm(in.)
48500<
C≤72000
Φ19.05(3/4)
Φ9.52(3/8)
72000<
C≤96000
Φ22.2(7/8)
Φ9.52(3/8)
PART 6 PIPE INSTALLATION AND
INSULATION
1 PIPE INSTALLATION FOR THE COOLING
SYSTEM
1.1 Precautions on Pipe Direction Design
Refrigerant pipe layout must be designed in accordance with the following principles:
(1) The air conditioning installation should not damage the bearing structure or the decorative style.
Air conditioning pipes should be laid out along the bottom of beam as possible. If pipes meet
one another at the same elevation, process based on the following principles:
Drain pipes enjoy the highest priority. Air ducts and pressure pipes should leave places for gravity
pipes.
Air ducts and small pipes should leave places for major pipes.
(2) The refrigerant pipe layout must be optimal in actual engineering with minimum pipe length and
bends. In this way, the performance of the unit can be maximized.
(3) The refrigerant pipe cannot affect air discharge and return of internal units. The minimum
distance between the refrigerant pipe with an insulation layer and the air return box is 300 mm
(11.8inch). If the air return or manhole is at the right lower part of the unit, the minimum distance
is 150 mm (5.9inch). When the refrigerant pipe needs to be laid at the air outlet side, avoid
laying the pipe at the front of the air outlet. The refrigerant pipe cannot connect to any part of
the unit except the joint points. If the preceding principles are not followed, performance of the
unit will be affected and running noises will be increased.
Содержание GC201808-III
Страница 36: ...GREE GMV5 HR HEAT RECOVERY UNITS 32 Circuit diagram of GMV Q144WM B1 F U Circuit diagram of GMV Q168WM B1 F U ...
Страница 87: ...GREE GMV5 HR HEAT RECOVERY UNITS 83 1 External Connection for Individual Units ...
Страница 92: ...GREE GMV5 HR HEAT RECOVERY UNITS 88 ...
Страница 227: ...GREE GMV5 HR HEAT RECOVERY UNITS 223 Troubleshooting ...
Страница 286: ...GREE GMV5 HR HEAT RECOVERY UNITS 282 Troubleshooting ...
Страница 314: ...GREE GMV5 HR HEAT RECOVERY UNITS 310 4 Loosen the screws on the compressor drive as shown in the figure below ...
Страница 362: ...JF00302879 ...