Heating Tables (continued) hot water demand, 747, 754, 755 hot water pipe sices, 395 humidities, industrial air conditioning, 681-689 hygroscopic materials, 688 incident angle, 177 indoor temperatures, 157, 168, 681-689 inertial separator, 330 infiltration through outside doors, 143 infiltration through walls, 140 infiltration through windows, 141 mflnmm utility 8Q instantaneous solar heat gain, 186-194 insulation conductivity, 454 insulation factors, 460 insulation Sickness, 462, 465 insulation to prevent freezing, 462 insulation, underground, 465 intake velocity, 279 iron elbow equivalents, 396 life of equipment, 728 limits for contaminants, 77-80 load factors, 539 maintenance cosL 729 maximum allowable concentrations dusts, 79 flammable gases, 77, 80 fumes, mists, 79 gases, 77, 80 vapors, 77, 80 metal gages for ducts, 238, 298, 299, 708, 709 meter performance, 752 minimum- outdoor air requirements to remove odors, 61 moist air factors, 14 moisture content for materials, 688 moisture regain, 688 moisture transfer, 131 motor classification, 642 motor current, 643 motor design limits, 640 motor drive applications, 644 motor horsepower, 640 motor ratings, 645 motor speed range, 640 motor starting methods, 645 motor torque, 644 motor voltage, 640 noise levels, 341 octave frequency bands, 335 ' oil fuel specifications, 472 oil beat value, 473 operating cost, 728-730 operating horns, 655, 730 orifice capacities, 361 outdoor air requirement, 61, 176 outlet velocities, 309 outdoor temperatures, 152, 156, 170 owning and operating cost, 728, 729 panel resistance ceiling, 427, 428 floor, 429 floor covering, 430' particle size, 74, 75 particulate matter, sise, 74 perimeter extended plenum branch duct capacity, 245-247 rise, 250 perimeter loop system diffuser area, 241 duct capacity, 243 feeder diameter, 239 perimeter radial system feeder duct capacity, 242 perimeter system return duct capacity, 250 permeability to vapor, 131 physiological response to heat, 64 pipe application, 451 Ventilating Air Conditioning Guide 1959 Tables (continued) pipe capacity, 365^367, 370, 395, 493, 496, 559, 560 pipe correction factor, 678 pipe covering factors, 460 pipe dimension, 436 pipe fittings, 440 dimensions, 441-450 pressure ratings, 440 pipe insulation, 454 pipe roughness, 37, 287 pipe surface, 436 thermal stress, 450 pipe volume, 404, 436 pressure loss area change, 291 ducts, 257 elbows, 290, 363, 396, 416, 752 fittings, 248. 249, 363, 396, 416, 752 refrigerant line, 559, 560 registers, 255, 256 return intake, 279 steam pipe, 382 velocity, 291 properties of air, 18-21 antifreeze solutions, 676 dichlorodifluoromethane, 544 fuel oil, 472 gaseous fue!
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762 CHAPTER 56 1959 Guide Hie coil should be of the return-bend type (square or slightly rectangular in form), and should have the pipes run ning east and west, with the coil on the south side of the building where it can receive the full sun effect all day long without shadows from the building .itself, or from the ad jacent obstructions such as trees or other structures.
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as. elevator shafts and stairwell* shall be enclosed.Jn a manner which shall prevent the. escape of fiber-containing material from the norklnj area. b)The entire Sprayed area, all ledges and surfaces Including tarpaulins within the enclosure shall be thoroughly, vectnned upon cMpljstIon of: the spraying., operation and ' taaedtately before the enclosure Is dismantled.
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-2- Ford Motor Company encourages the "interdivisional" use of specifications, and while a prefix such as ESA shows that the specification was written and released originally by Chassis Engin eering, there may be other users of the specification, in fact, the original releasing office may or may not continue to use it.
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