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GREE DC Inverter Side Discharge VRF
Ⅱ
for North America
8
In cooling, the low-temperature and low-pressure refrigerant gas from each indoor heat exchanger
will be merged and inhaled by the compressor and then become high-temperature and high-pressure
gas, which will later be discharged into outdoor heat exchangers. By exchanging heat with outdoor air,
refrigerant will turn to liquid and flow to each indoor unit via Y-type branch or manifold. Pressure and
temperature of the refrigerant will then be lowered by throttle elements before it flows into indoor heat
exchangers. After exchanging heat with indoor air, refrigerant wil become low-temperature and
low-pressure gas again and repeat the circulation so as to realize the cooling effect. In heating, 4-way
valve will be energized to make refrigerant circulate in a reverse direction of cooling. Refrigerant will
release heat in indoor heat exchangers (electric heating elements will also work under certain
circumstance and release heat) and absorb heat in outdoor heat exchangers circularly so as to realize
the heating effect.
Summary of Contents for GMV-24WL/C-T
Page 4: ...GREE DC Inverter Side Discharge VRF for North America 1 PRODUCT...
Page 12: ...GREE DC Inverter Side Discharge VRF for North America 9 CONTROL...
Page 17: ...GREE DC Inverter Side Discharge VRF for North America 14...
Page 18: ...GREE DC Inverter Side Discharge VRF for North America 15 Button Graphics...
Page 65: ...GREE DC Inverter Side Discharge VRF for North America 62 Switchover of Software Languages...
Page 66: ...GREE DC Inverter Side Discharge VRF for North America 63 INSTALLATION...
Page 98: ...GREE DC Inverter Side Discharge VRF for North America 95 MAINTENANCE...
Page 150: ...JF00302320...