Document 2q9eZRQGZ4m2RKVEQ3kjVKMV5
Heating Ventilating Air Conditioning Guide 1939
requirements, in the air conditioning range of Operation, is small f0r . change of evaporator temperature. On the other hand, the capacity and power of the centrifugal machine vary rapidly, and the capacity of the steam ejector also varies considerably. Thus, both these latter types tend to be more nearly self-regulating than the reciprocating and rotary com. pression type. On the other hand, the operating range of the latter near standard capacity is superior. Although the capacity of the reciprocating and rotary compressor is little affected by the condenser temperature the power of the compressor is greatly affected, while the reverse is true
Chapter 23. Cooling and Dehumidification Methods
_ water is rather high in temperature;; From Fig. 6 it is evident ht steam jet refrigeration is better suited dor use with evaporator temperatures above rather-than below 40 F.
CONDENSERS
Condensers used in connection with refrigerating equipment for ab
sorbing the work of compression are of three general designs: (1) air,
(2) water, and, (3) evaporative,
.
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Air Cooled Air cooled condensers are seldom used for capacities above 3 tons of
refrigeration, unless an adequate water supply: is extremely difficult to
Fig. 6. Performance Characteristics qf Compression Refrigeration Machines at Constant Speed
for the centrifugal compressor. As previously indicated,' the condensertemperature has no effect on the capacity of the steam ejector type of compressor until a certain point is reached, beyond which the capacity is zero. The steam consumption for the performance, characteristic curves shown in Figs. 6 and 7 remains constant for all evaporator and condenser temperatures. ;
Steam jet refrigeration requires from 3 to 10 times as much condenser water as other types of mechanical refrigeration, but its capacity is not effected by condensing water temperature as long as the water does not greatly exceed 100 F. Consequently, steam jet systems are well suited to those applications where condensing water is cheap, or where con-
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Fig. 7. Performance Characteristics of Compression Refrigeration Machines at Constant Speed
obtain, as for instance in railway air conditioning.1^ Even on fractional tonnage installations, air is used as the condensing medium only where water is expensive or where simplicity of installation warrants the higher condensing pressure, and consequent higher power costs than can be obtained using water as the condensing medium.
The conventional air cooled condenser consists of an extended surface coil across which air is blown by a fan. The hot refrigerant gas enters the coil at the top and as it is condensed flows to a receiver located below the condenser. Air cooled condensers should always be located in a well ventilated space so that the heated air may escape and be replaced by cooler air.