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CHAPTER 1
1957 Guide
Two-Pipe System (Steam or Water): A heating system in which.one pipe is used for the supply of the heating medium to the heating unit, and another for the return of the heating medium to the source of heat supply. The essential feature of a twopipe system is that each heating unit receives a direct supply of the heating medium, which medium cannot have served a preceding heating unit.
Up-Feed System: A heating system in which the supply mains are below the level
of tVhaecuhuematiHngeautninitgs Swyhsictehmth: eAy stwerov-ep.ipe steam heating system equipped with the necessary accessory apparatus which will permit operating the system below atmos
pheric pressure when desired. Vane Ratio: In air distributing devices the ratio of depth of vane to shortest open
ing width between two adjacent grille bars. Vapor: The gaseous form of substances which are normally in the solid or liquid
state, and which can be changed to these states either by increasing the pressure or decreasing the temperature- Vapors diffuse. (ASA definition.)
Vapor Heating System: A steam heating system which operates under pressures at or near atmospheric and which returns the condensate to the boiler or receiver by gravity. Vapor systems have thermostatic traps or other means of resistance on the return ends of the heating units for preventing steam from entering the return mains; they also have a pressure-equalizing and air-eliminating device at the end of the dry-
retVurenl.ocity: A vector quantity which denotes at once the time rate and the direction
of a linear motion. V = -jr- For uniform linear motion V = % Common units at l
areV: efenetitlapteior ns:ecTohned.process of supplying or removing air, by natural or mechanical means, to or from any space. Such air may or may not have been conditioned. (See
AiVr Cisocnodsiittiyo:niTnhg.a) t property of semi-fluids, fluids and gaseh by virtue of which they resist an instantaneous change of shape or arrangement of parts. It is the cause of
fluid friction whenever adjacent layers of fluid move with relation to each other. The coefficient of viscosity is the resistance offered by a layer of the fluid of unit
area to the motion parallel to this area of another layer of the fluid at unit distance moving with unit velocity relative to the first layer! This coefficient is known as the absolute viscosity, and in cgs units is the force in dynes per square centimeter at a velocity of 1 cm per second at a distance of 1 cm. Thus unit of absolute viscosity is the poise. Values of absolute viscosity are frequently listed in centipoises, a centi-
poiIsne bmeainngy 1f/o1r0m0uolaf s1 apbosisoelu. te viscosity is expressed in pounds per foot second or pounds per foot hour. Conversion from centipoises may be made as follows: vis cosity in centipoises X 0.000672 = viscosity in pounds per foot second, or viscosity
in KceinnetimpoaistiecsviXsc2o.s4i2ty =is vthisecroastiitoy oinf pabosuonldustepveisrcfoosoittyhtooutrh. e density of a fluid. The unit is the stoke which equals one poise per cu cm per gram, or 1 sq cm per sec. For conversion to English units: kinematic viscosity in stokes X 0.001076 = kinematic
visVcoosluitmyein, Ssqpueacrieficfe: eTthpeervsoelucmoned.of a substance per unit mass; the reciprocal of
density. Units: cubic feet per pound, cubic centimeters per gram, etc. Warm Air Heating System: A warm air heating plant consists of a heating unit
(fuel-burning furnace) enclosed in a casing, from which the heated air is distributed
to various rooms of the building through ducts. Warm Air Heating System, Forced: A warm air heating system in which circula
tion of air is effected by a fan. Such a system may include air cleaning devices. Warm Air Heating System, Gravity: A warm air heating system in which the mo
tive head producing flow depends on the difference in weight between the heated air leaving the casing and the cooler air entering the bottom of the casing.
Warm Air Heating System, Perimeter: A warm air heating system of the combi nation panel and convection type. Warm air ducts embedded in the concrete slab of a basementless house, around the perimeter, receive heated air from a furnace and deliver it to the heated space through registers placed in or near the floor. Air is
returned to the furnace from registers near the ceiling.
CHAPTER 2
ABBREVIATIONS, SYMBOLS, CONVERSION FACTORS
Standard Abbreviations; Standard Symbols; Greek Alphabet; Conversion Equations; Graphical Symbols for Piping, Ductwork, Heating and Ventilating, Refrigerating; Identification of Piping by Color
THIS chapter contains information regarding abbreviations, symbols, and conversion equations, which are of particular interest to the engi neer .engaged in heating, ventilating, and air conditioning.
ABBREVIATIONS
Abbreviations are shortened forms of names and expressions employed in texts and tabulations, and should not generally be used as symbols in equations. Most of the following abbreviations have been compiled from a list of approved standards.1 In general, the period has been omitted in all abbreviations, except where the omission results in the formation of an English word. Additional abbreviations applying to individual chapters will be found at the end of Chapters 3, 4, and 13.
Absolute.........................................................................................................................abs
Air horsepower........................................................................................................ air hp
Alternating-current (as adjective).............................................
a-c
Ampere......................
amp
Ampere-hour.. ...................................................................................................... amp-hr
Atmosphere.. Average.......
Avoirdupois.. Barometer__ Boiling point
atm
avg avdp bar. ...bp
Brake horsepower....................... Brake horsepower-hour.............
British thermal unit................... British thermal units per hour.
Calorie...........................................
... bhp bhp-hr ... Btu .. Btuh
___cal
Centigram................................................................................................ '..................... eg
Centimeter...............
cm
Centimeter-gram-second (system)............................................................................. cgs
"Uuic...... ......................................................................................................................cu
Cubic centimeter........................................................................................... cu cm or cc
Cubic foot......................................................."......................................................... cu ft Cubic feet per minute................................................................................................. cfm Cubic feet per second................................................................................................... cfs Decibel............................. ;............................................................................................db
Degree*............................................................................................................ .deg or
Degree, Centigrade.........................................................................................................C
Degree, Fahrenheit......................................................................................
.. F
Degree, Kelvin................................................................................................................ K
Degree, Rankine..............................................
R
Diameter.....................................................................................................................diam
i breT'at*ons for Scientific and Engineering Terms, Z10.1-1941 (American Standards Association). eion* f a recoaunended that the abbreviation for the temperature scale, F, C, K, R, be included in expres-
ior numerical temperatures but, wherever feasible, the abbreviation for degree be omitted e-Q., 68 F.
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