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Climate Control | 12 |
Controlled Environment | 12 |
Ventilation | 12 |
Temperature | 9 |
Thermal Environment | 9 |
Air Conditioning | 8 |
Design Requirements | 7 |
Heating | 7 |
Building Design | 6 |
Mechanical Equipment | 5 |
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Christensen, G. | 1 |
Hallenberg, E.X. | 1 |
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Hutcheon, N. B. | 1 |
Mason, Ellsworth | 1 |
Milbank, N. O. | 1 |
PECCOLO, CHARLES | 1 |
Wilson, A. Grant | 1 |
Wilson, Maurice J. | 1 |
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Hutcheon, N. B. – 1964
Modified and controlled relative humidity in buildings for certain occupancies is discussed. New criteria are used in determining the needs, desirability and problems associated with humidities in a building. Severe winter climate requires that special attention be given to the problems associated with increased indoor humidities during cold…
Descriptors: Building Design, Building Operation, Climate Control, Controlled Environment
Modern Schools, 1973
Discusses key factors to be considered by local educational authorities in creating a healthful -- and consequently constructive -- environment in the school building for students, teachers, and administrators. Focuses on ventilation, air cleaning, and humidification. (EA)
Descriptors: Air Conditioning, Climate Control, Controlled Environment, Design Requirements
Perkins and Will, Architects, Chicago, IL. – 1968
Discusses heating, cooling, and ventilation for the classroom in relationship to students' learning abilities. It is designed to assist school boards, administrators, architects and engineers in understanding the beneficial effects of total climate control, and in evaluating the climate conditioning systems available for schools. Discussion…
Descriptors: Classroom Environment, Climate Control, Controlled Environment, Equipment
Wilson, A. Grant – 1967
This discussion of air leakage emphasizes cause and provides suggestions for elimination of undesirable effects. Cause parameters described are--(1) pressure differential, (2) building shape, (3) temperature differential, (4) opening sizes, (5) mechanical system pressures, and (6) climatic factors. Effects discussed are--(1) increased mechanical…
Descriptors: Air Conditioning, Building Design, Climate, Climate Control
Wilson, Maurice J. – Actual Specifying Engineer, 1963
There are many reasons for air-conditioning schools and among them are--(1) the improvement of learning and teaching efficiency, (2) effective use of the educational plant for a greater part of the year, and (3) more efficient use of space through compact building design. Five climate control techniques are cited as providing optimum…
Descriptors: Air Conditioning, Air Conditioning Equipment, Classrooms, Climate Control
Mason, Ellsworth – Library Journal, 1967
Quality, not intensity, is the keystone to good library lighting. The single most important problem in lighting is glare caused by extremely intense centers of light. Multiple interfiling of light rays is a factor required in library lighting. A fixture that diffuses light well is basic when light emerges from the fixture. It scatters widely,…
Descriptors: Air Conditioning, Building Design, Climate Control, Controlled Environment
Hartman, Robert R. – 1968
Contains a selected and annotated listing of source material concerning the thermal environment in school facilities. It is directed toward the school planner, architect, or administrator concerned with developing a more functional classroom environment. Topical coverage includes--(1) The Thermal Environment and Learning, (2) Physiological Factors…
Descriptors: Air Conditioning, Annotated Bibliographies, Climate Control, Controlled Environment
Electric Energy Association, New York, NY. – 1974
Much of the innovative work in the design and application of heating, ventilating, and air conditioning (HVAC) systems is concentrated on improving the cost effectiveness of such systems through optimizing energy use. One approach to the problem is to reduce a building's HVAC energy demands by designing it for lower heat gains and losses in the…
Descriptors: Air Conditioning, Climate Control, Controlled Environment, Design Requirements
Hallenberg, E.X. – Research Development, 1964
The complexity of today's research laboratories requires a completely controllable environmental surrounding. Research facilities require carefully controlled temperatures, relative humidity, and moisture, and must be free of interference from air-borne sound, mechanical vibrations, and electrical sources. Also desirable are special power…
Descriptors: Acoustics, Climate Control, Controlled Environment, Electrical Systems
Christensen, G.; And Others – 1964
The testing plans, procedures, and results of an experiment are revealed concerning the thermal performance and variable factors of unvented double windows, their heat transmission and inner surface temperature. Data are given to help improve the design and development of standards for the thermal performance of windows. Building humidity, window…
Descriptors: Air Flow, Building Design, Climate, Climate Control
PECCOLO, CHARLES – 1962
THIS IS A REPORT OF A FIRST PILOT STUDY WHICH PRECEDES A SERIES OF STUDIES BEING CONDUCTED BY THE IOWA CENTER FOR RESEARCH IN SCHOOL ADMINISTRATION AND LENNOX INDUSTRIES INC., MARSHALLTOWN, IOWA. IT IS A DIGEST OF A THESIS BY DR. CHARLES PECCOLO WHO SERVED AS RESEARCHER ON THIS FIRST STUDY. THE STUDY AIMED AT MEASURING THE EFFECTS OF THERMAL…
Descriptors: Air Conditioning, Air Conditioning Equipment, Building Design, Climate Control
Milbank, N. O. – 1968
Two similarly large buildings and air conditioning systems are comparatively analyzed as to energy consumption, costs, and inefficiency during certain measured periods of time. Building design and velocity systems are compared to heating, cooling, lighting and distribution capabilities. Energy requirements for pumps, fans and lighting are found to…
Descriptors: Air Conditioning, Air Conditioning Equipment, Building Design, Climate Control