Refine
Estimated Years 1950-1959Clear
14,527 results foundRefine Search
FILE NAME Kohler KOH DATE 1955 DOC KOH012 DOCUMENT DESCRIPTION Roster - American Ceramic Society American -- Ceramic , ociety .
Document imageDocument imageDocument imageDocument image
refid# rxoOXrr3YNj9X9B6m4vdkd2DJ58 pages
INDEX HEATING VENTILATING AIR CONDITIONING GUIDE 1950 Technical Data Section Chapters 1-50 and Pages 1-1024 A Abatement air pollution, 153 smoke, 8,153 Abbreviations* 11 Absolute humidity, 5 pressure, 7 temperature, 9 sero. 1 Absorbents, 795 process, 795 temperature, pressure, oentration, 798 con* Absorbers duct sound, 852 outlet, 857 plate cells, 855, 856 plenum, 857 Absorption systems, 775, 795 Acceleration, 1 Acclimatization, 122 Acoustics, 843 Activated alumina, 796 Activated carbon, 701, 964 Activated bauxite, 797 Adiabatic, 1 . mixing injected water, 59 two air streams, 57 saturation, 59,.
Document image
refid# 0606M20QrrdVnmEbXwry30Xqk1 page
Heating Ventilating ' Air Conditioning Guide 1950 Exhaust systems (continued) hoods (continued) axial velocity formula for, 923 canopy, 925 capture velocities 921 chemical laboratories, 926 design principles, 920 kitchen, 927 large open, 925 lateral exhaust, 926 low velocity systems, 924 spray booths, 926 suction, 921 velocity contours, 925 resistance of, 930 suction requirements, 923 types of fans, 931 velocity requirements, 921,928 Expansion factor, gaees, 89 of pipe, 482, 562 orifice plates, 85 tank piping, 498 tank size, 498 tanks, 498 valves, 784 F- Fan, fans, 439, 675 application, 689 arrangement of drives, 684, 686 attic, 691 location, 691 types, 675 axial flow, 675 centrifugal, 675 characteristic curves, 680-682 control, 686 designations, 684, 685, 686 efficiency, 677 furnace system, 425 installation, 689 laws, 677 motive power, 687 noise generated, 681, 683, 848 performance, 679 radial flow. 675 selection of, 687 air conditioning systems, 687 industrial exhaust systems, 941 ' speed, 677 system characteristics, 683 volume control, 686 Fanning formula. 77 Fever therapy, 145 equipment for production of. 145 Film conductance, 103, 169, 172, 178, 749 coefficient, 103, 172, 178, 749, 752 Filter, filters, 693, 704 air conditioning units, 544, 549 dry air, 693, 696, 962 dust, 693 installation, 700 performance, 697 selection, 699 testing, 697 viscous automatic, 695 viscous impingement ' type, 694 Fittings, 418, 432, 557 pipe allowance, 419, 432, 459, 487, 930, 984 types of, 419. 432, 557 Flexible mountings, 862 Float trap, 474 Floor cooling unit, 548 heat transfer coefficients. 190. 191 unit heater, 553 Flow coefficients, orifices, 86, 87 compressible fluids, 81 critical, 79 measurement liquids, 91 orifices, 83, 93 ' Pitot tube, 95, 1005 . steam, 90 Flow meters, 97, 597, 983 Flue gas loss, 316. 318 Fluid flow, 75 theory, 75 Fluid meters, 97, 597 Fog, 4, 154 Force, 4 Forced air heating system, 425 circulation pipe sizes, 495 convection, 104, 749 Free convection, 104 enthalpy, 4 Friction loss air ducts, 440, 641, 642, 643 circular pipes, 77, 641 elbows, 419, 432, 459, 487, 930, 984 gas piping, 348 non-circular pipes, 80 refrigerant piping, 787 water heating, 487 water piping, 487, 980-982 Fuel, fuels, 303 burning equipment, 329, 353 classification, 303, 307 * consumption, 399 degree-day method.- 402 load factor, 413 . maximum demands, 413 seasonal efficiency, 413 firing methods, 319-323 unit consumption, 407 utilization, 368 Fuel oil. 307 carbon residue, 308 classification of, 307 ^ combustion of, 314 grade of, 309 maximum carbon dioxide val- ues, 315, 343 theoretical air requirements, 314.343 viscosity, 308,342 Fumes, 4. 153 Fundamentals, beat transfer, 101 Furnace, furnaces. 4, 353. 367 capacity, 369, 370, 371 casings, 373 cast iron, 369 design, 372 efficiency, 372 fan, 368 gas-fired units, 344 gravity warm air, 367 Furnace.
Document image
refid# KJX8aEEpKzErwpDX84pwY5GBN1 page
526 CHAPTER 23 1950 Guide imbedded in the slab, a larger portion of the heat will flow into the ground, and a smaller portion into the space to be heated.
Document image
refid# 15qgR14kEjR4pdO8KobEjd0dj1 page
594 CHAPTER 28 . 1950 Guide duits (H) and (I) are prefabricated.
Document image
refid# x1RrQRdqJmOX7EVbwk3B7edZQ1 page
978 CHAPTER 48 1950 Guide Table 1.
Document image
refid# 1QE4ryLXmnQGyV5qxaY0jeOvj1 page
144 CHAPTER 7 1951 Guide factors in recovery is an environment in which the patient can lose heat by radiation and evaporation, namely,- a cool room with dehumidified air.- The patient in shock, or the patient who has had a severe hemorrhage,' may have an inadequate volume of circulating blood and be unable to maintain an adequate skin circulation.
Document image
refid# ga4ea5DdX34n1QkXJ8xMwDnrJ1 page
232 CHAPTER 10 1951 Guide Braatz (A.S.H.V.E.
Document image
refid# MJyykE1RR6OpggavZoVM571Nj1 page
280 CHAPTER 12 1951 Guide Table 12.
Document image
refid# Oz9qBVb0vY9Vm84Rxg52gJN11 page
664 ' CHAPTER 31 1951 Guide appreciable, as in elbows of good design, it is customary to include the dynamic loss with the friction loss, thereby facilitating design calculations.
Document image
refid# ppaZZX4N41M3dj19LM66KZmN61 page
728;, CHAPTER 34 1951 Guide Stath Tablb 1.
Document image
refid# GmO58Z3ajZ2eoJ71B421oqd2n1 page
18 CHAPTER 2 1952 Guide Graphical Symbols for Drawings, MjoSMiV A .'
Document image
refid# vVxvj98oYw38zYYzmJgN8M0a81 page
110 CHAPTER 5 1952 Guide the analogy. of electrical resistance-capacitance networks to thermal systems.11 For two dimensional problems in steady state conduction, additional techniques of solution are found in flux plotting,5'18 and in the use of a potential tank.5-18 These methods are of most direct use in problems in which the boundaries of the two dimensional shape are made up of isothermal and adiabatic surfaces.
Document image
refid# 9JdwoJRwykQgzj0eRmgzQVZe1 page
288 CHAPTER 12 1952 Guide are also given.
Document image
refid# K6o5JOd4axJaVaOvM4q820Eoo1 page
588 CHAPTER 26 1952 Guide i- ' of- pipe by welding sometimes warrants using ' lighter wall thicknesses.
Document image
refid# G55e93Xgex7kRZkg8pJRKn0nn1 page