ASHRAE Journal - April 2012 - 82

refrigeration
a fridge is by pressurizing the working fluid so that its boiling point rises. In this way, the same working fluid can be boiled at low pressure (when it is colder than the stuff in the fridge) and reliquefied at high pressure (when it is warmer than the outside of the refrigerator). While the working fluid is boiling or reliquefying it does not change temperature or pressure but the amount of liquid in the total fluid content changes. If liquid is at its boiling point, for example just at the beginning of the boiling process or just at the end of the liquefying process, then this is called saturated liquid. At the opposite end of these processes, when the liquid is all turned to gas, or the gas is just on the point of liquefying, this is called saturated vapor. Calling it vapor instead of gas is just another example of refrigeration people wanting to sound smarter than they are. Maybe they don’t like the thought of admitting that they have saturated gas. For most situations within the refrigeration system, to know the condition of the working fluid, it is sufficient to know the temperature and the pressure. If these are known, then everything else about the fluid can be calculated, or looked up in tables, or most likely these days read off a computer screen or an app. However, when the working fluid is boiling or liquefying, the boiling point and pressure are locked together by their fixed relationship. Knowing the temperature and pressure of the fluid is not enough to determine the other properties. This is a bit like when you drive your car into a tunnel and the satnav system loses contact with the satellite. You know the car is in the tunnel but until it emerges from the other end and can be seen again it is not possible for the satellite to tell exactly where in the tunnel it is. Unfortunately, for the interested operator who wants to know what’s happening all around the refrigeration circuit the two “tunnels” in the system are where most of the heat transfer action takes place. In the evaporator the working fluid is boiled from liquid to gas, and in the condenser it is reliquefied. Most of the refrigerant in the circuit will be in one or the other of these places, and its other properties are hidden from view by the tunnel effect. The normal way of describing the condition of the fluid is as a percentage quality. If the fluid has a vapor quality of 10%, then 90% of it is liquid, and 10% is gas. If it has a vapor quality of 80%, then only 20% of it is liquid. The vapor quality is the percentage of the weight of working fluid in the vapor state. However, because the density of liquid is much higher than gas, the liquid only takes up a very small amount of the space. Andy Pearson, Ph.D., C.Eng. is group engineering director at Star Refrigeration in Glasgow, U.K.

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ASHRAE Journal

April 2012



ASHRAE Journal - April 2012

Table of Contents for the Digital Edition of ASHRAE Journal - April 2012

ASHRAE Journal - April 2012
Contents
Commentary
Industry News
Meetings and Shows
Letters
Feature Articles
Effects of Typical Inlet Conditions on Air Outlet Performance
Designing for IAQ in Natatoriums
Shielding Fresh Air Ventilation Intakes
Don’t Turn Active Beams Into Expensive Diffusers
Technology Award Case Studies:
Deere: Running Efficient
Standing Columns
Building Sciences
Washington Report
Emerging Technologies
Refrigeration Applications
Products
Classified Advertising
Advertisers Index
ASHRAE Journal - April 2012 - ASHRAE Journal - April 2012
ASHRAE Journal - April 2012 - Cover2
ASHRAE Journal - April 2012 - 1
ASHRAE Journal - April 2012 - 2
ASHRAE Journal - April 2012 - Contents
ASHRAE Journal - April 2012 - Commentary
ASHRAE Journal - April 2012 - 5
ASHRAE Journal - April 2012 - Industry News
ASHRAE Journal - April 2012 - 7
ASHRAE Journal - April 2012 - 8
ASHRAE Journal - April 2012 - 9
ASHRAE Journal - April 2012 - 10
ASHRAE Journal - April 2012 - 11
ASHRAE Journal - April 2012 - 12
ASHRAE Journal - April 2012 - Letters
ASHRAE Journal - April 2012 - Meetings and Shows
ASHRAE Journal - April 2012 - 15
ASHRAE Journal - April 2012 - Effects of Typical Inlet Conditions on Air Outlet Performance
ASHRAE Journal - April 2012 - 17
ASHRAE Journal - April 2012 - 18
ASHRAE Journal - April 2012 - 19
ASHRAE Journal - April 2012 - 20
ASHRAE Journal - April 2012 - 21
ASHRAE Journal - April 2012 - 22
ASHRAE Journal - April 2012 - 23
ASHRAE Journal - April 2012 - Designing for IAQ in Natatoriums
ASHRAE Journal - April 2012 - 25
ASHRAE Journal - April 2012 - 26
ASHRAE Journal - April 2012 - 27
ASHRAE Journal - April 2012 - 28
ASHRAE Journal - April 2012 - 29
ASHRAE Journal - April 2012 - 30
ASHRAE Journal - April 2012 - 31
ASHRAE Journal - April 2012 - 32
ASHRAE Journal - April 2012 - 33
ASHRAE Journal - April 2012 - Shielding Fresh Air Ventilation Intakes
ASHRAE Journal - April 2012 - 35
ASHRAE Journal - April 2012 - 36
ASHRAE Journal - April 2012 - 37
ASHRAE Journal - April 2012 - 38
ASHRAE Journal - April 2012 - 39
ASHRAE Journal - April 2012 - 40
ASHRAE Journal - April 2012 - 41
ASHRAE Journal - April 2012 - 42
ASHRAE Journal - April 2012 - 43
ASHRAE Journal - April 2012 - Deere: Running Efficient
ASHRAE Journal - April 2012 - 45
ASHRAE Journal - April 2012 - 46
ASHRAE Journal - April 2012 - 47
ASHRAE Journal - April 2012 - 48
ASHRAE Journal - April 2012 - 49
ASHRAE Journal - April 2012 - 50
ASHRAE Journal - April 2012 - 51
ASHRAE Journal - April 2012 - Don’t Turn Active Beams Into Expensive Diffusers
ASHRAE Journal - April 2012 - 53
ASHRAE Journal - April 2012 - 54
ASHRAE Journal - April 2012 - 55
ASHRAE Journal - April 2012 - 56
ASHRAE Journal - April 2012 - 57
ASHRAE Journal - April 2012 - 58
ASHRAE Journal - April 2012 - 59
ASHRAE Journal - April 2012 - 60
ASHRAE Journal - April 2012 - 61
ASHRAE Journal - April 2012 - Building Sciences
ASHRAE Journal - April 2012 - 63
ASHRAE Journal - April 2012 - 64
ASHRAE Journal - April 2012 - 65
ASHRAE Journal - April 2012 - 66
ASHRAE Journal - April 2012 - 67
ASHRAE Journal - April 2012 - 68
ASHRAE Journal - April 2012 - 69
ASHRAE Journal - April 2012 - Washington Report
ASHRAE Journal - April 2012 - 71
ASHRAE Journal - April 2012 - Emerging Technologies
ASHRAE Journal - April 2012 - 73
ASHRAE Journal - April 2012 - 74
ASHRAE Journal - April 2012 - 75
ASHRAE Journal - April 2012 - 76
ASHRAE Journal - April 2012 - 77
ASHRAE Journal - April 2012 - 78
ASHRAE Journal - April 2012 - 79
ASHRAE Journal - April 2012 - 80
ASHRAE Journal - April 2012 - Refrigeration Applications
ASHRAE Journal - April 2012 - 82
ASHRAE Journal - April 2012 - 83
ASHRAE Journal - April 2012 - Products
ASHRAE Journal - April 2012 - 85
ASHRAE Journal - April 2012 - Classified Advertising
ASHRAE Journal - April 2012 - 87
ASHRAE Journal - April 2012 - Advertisers Index
ASHRAE Journal - April 2012 - Cover3
ASHRAE Journal - April 2012 - Cover4
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