
GENERAL DESCRIPTION
29
The cascade condenser (item 113) cools the high pressure R-508B/R23 vapor, and condenses it into a
high pressure liquid. A relief valve (item 281) is mounted near the condenser and will relieve at 400
PSIG.
High pressure liquid refrigerant exits the cascade condenser. The liquid flows through a filter drier (item
208) and enters a tee. The tee will divert some of the liquid refrigerant to be used in the bypass circuit
(see Bypass Loop description).
System 2 – Description (10 HP – 20 HP Systems)
The high pressure switch (item 295) senses the discharge refrigerant pressure and will open a contact in
the event that discharge pressure exceeds 350 PSIG (24.1 bar(g)). This contact opening will serve to shut
down the unit and must be manually reset.
The discharge gas then enters the oil separator (item 245). The oil separator removes 90% of the oil in
the refrigerant vapor. It collects the oil and drains it back to the compressor crankcase. This prevents
oil logging in the evaporator.
The discharge refrigerant vapor passes a tee, which diverts some of the refrigerant to the bypass loop
(see Bypass Loop description).
The residual discharge refrigerant vapor passes through the discharge desuperheater (item 244). The
discharge refrigerant vapor passes a tee. In the event that discharge pressure exceeds a range of 270
PSIG (18.6 bar(g)) to 300 PSIG (20.7 bar(g)), see unit specific refrigeration flow diagram for setting. Some
of the discharge refrigerant vapor will be diverted to the high pressure dump valves (item 253), and will
flow to the vapor tank (item 255) where the gas is siphoned back into the suction line to maintain
proper flow of the refrigerant. The residual discharge refrigerant vapor then enters the cascade
condenser.
The cascade condenser (item 113) cools the high pressure R-508B/R23 vapor, and condenses it into a
high pressure liquid. A relief valve (item 281) is mounted near the condenser and will relieve at 400
PSIG.
High pressure liquid refrigerant exits the cascade condenser. The liquid flows through a filter drier
(item 208), and enters a tee. The tee will divert some of the liquid refrigerant to be used in the bypass
circuit (see Bypass Loop description).
Содержание ZP Series
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