Document r7Gw5wOXOqeZxgpV39JbOGE0
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PTER 2
1953 Guide
76. Scale Trap
77. Spray Pond
78. Thermal Bulb
79. Thermostat (Remote Bulb)
80. Valves 80.1 Automatic Expan
sion 80.2 Compressor!.Suction-
Pressure Limiting, ' Throttling Type
(Compressor Side) 80.3 Constant Pressure,
Suction
80.4 Evaporator Pressure Regulating, Snap Action
80.5 Evaporator Pressure Regulating, Thermo- : static Throttling Type
"ft"
--(sp-
80.6 Evaporator Pressure Regulating, Throt tling Type (Evaporator Side)
80.7 Hand Expansion
80.8 Magnetic Stop
JL
80.9 Snap Action
80.10 Suction Vapor Regulating
TZfP"
80.11 Thenno Suction
80.12 Thermostatic Ex-
pansion
80.13 Water 81. Vibration
Line
Absorber.
-i-
IDENTIFICATION OF PIPING SYSTEMS BY COLOR
The color scheme for identification of piping systems, based on material
carried, as listed in the following table and shown in Fig. 1, is reprinted
from Part V, Fourth Edition, of the Engineering Standards of the Heat
ing, Piping and Air Conditioning Contractors National Association,7
Cr\l.a_s__s
Color
F--Fire-protection
Red
D--Dangerous materials S--Safe Materials
Yellow or Orange Green (or the achromatic colors, white,
and, when required
black, gray or aluminum)
P--Protective materials V--Extra valuable materials
Bright blue Deep purple
Fig. 1. Main Classification by Color 'See Scheme for Identification of Pipin* Systems, A13-1928, American Standard, -------
CHAPTER 3
THERMODYNAMICS
Mass and Energy Balances; Thermodynamic Properties of Moist Air; Formulas and
Tables; Thermodynamic Properties of Water, Formulas and Tables; Degree of
Saturation; A.S.H.V.E. Psychrometric Chart; Solution of Air Conditioning ;
Problems by Use of Tables and Psychrometric Chart; U: S."
Standard Atmosphere
,'
THERMODYNAMICS is that branch of natural science which deals with energy and its transformations into various forms. In this chap ter the discussion will be limited to thermodynamics as it affects the arts of heating and air conditioning. This will necessarily presume some knowledge of the fundamentals of the science on the part of the reader who may also find it desirable to refer to a standard text on Ithe subject, preferably one published after 1930.
MASS AND ENERGY BALANCES
The First Law of Thermodynamics is a statement, of the Principle of Conservation of Energy. It may be stated as follows: The energy added to a system is equal to the increase or decrease of the energy stored in the system, plus the energy which leaves the system. For a completely contained, or non-flow system, this may be restated as: The heat added to a non-flow system is equal to the change in the internal energy of the system, plus
the work done by the system.
iqi = Uj -- Ui + w
(1)
For a constant pressure process
iqi = Hi -- Hi
(2)
where
iq* = energy added between points 1 and 2. U = internal energy of system. w = work done by system. H = enthalpy of system.
Subscripts 1 and 2 refer to sections of the system between which a change takes place.
For engineering problems, a more important application of the. First Law is its use in cases in which, in addition to energy, one or more fluids are crossing the boundaries of the system. The most simple of-these is the steady flow system, in which the rates of energy and mass flow across the boundaries of the system are constant, and no mass or energy is stored or released by the system.
Consider a system as illustrated in Fig. 1. The fluid crossing the boundaries of the system carries with it potential energy by reason of its elevation above some convenient datum; kinetic energy by reason of its
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