This instruction manual covers the refrigeration gear and platforms for functions except human convenience. This e-book comprises details on cooling, freezing, and storing meals; commercial purposes of refrigeration; and coffee temperature refrigeration and has been up to date to incorporate forty seven Interactive Tables and 152 Digitized Graphs. basically a reference for the practising engineer, this quantity can also be necessary for an individual concerned about the cooling and garage of nutrients items. The ebook is split into 9 separate sections:
- Refrigeration process Practices
- Food garage and gear
- Food Refrigeration
- Distribution of Chilled and Frozen meals
- Industrial functions
- Low-Temperature purposes
- Refrigeration gear
- Unitary Refrigeration apparatus
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Extra info for 2006 ASHRAE Handbook - Refrigeration (I-P Edition)
36 Fig. 35 Sight Glass and Charging Valve Locations Head Pressure Control for Condensers Used with Cooling Towers (Water Bypass Modulation) System Practices for Halocarbon Refrigerants Fig. 37 Head Pressure Control for Evaporative Condenser (Air Intake Modulation) Fig. 37 Head Pressure Control for Evaporative Condenser (Air Intake Modulation) via dampers, on either inlet or discharge; and (6) combinations of these methods. For further information, see Chapter 35 of the 2004 ASHRAE Handbook—HV AC Systems and Equipment.
One solenoid valve can be wired to close at reduced system capacity. The thermostatic expansion valve bulbs should be located between the cooler and the liquid-suction interchanger, if used. Locating the bulb downstream from the interchanger can cause excessive cycling of the thermostatic expansion valve because the flow of high-pressure liquid through the interchanger ceases when the thermostatic expansion valve closes; consequently, no heat is available from the high-pressure liquid, and the System Practices for Halocarbon Refrigerants Fig.
These units are usually installed so that the suction outlet drains the shell. When the units are used to evaporate liquid refrigerant returning in the suction line, the free-draining arrangement is not recommended. Liquid refrigerant can run along the bottom of the heat exchanger shell, having little contact with the warm liquid coil, and drain into the compressor. By installing the heat exchanger at a slight angle to the horizontal (Figure 29) with gas entering at the bottom and leaving at the top, any liquid returning in the line is trapped in the shell and held in contact with the warm liquid coil, where most of it is vaporized.