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Maine Audubon Society, Falmouth. – 1977
This document, intended primarily for mortgage lenders, is designed to aid readers in evaluating solar heating technology in the aspects of its capital cost and potential for recovery of investment. Whether or not American consumers will fully exploit this alternative will depend upon interest rates, the allocation of capital to finance the higher…
Descriptors: Building Design, Climate Control, Energy, Energy Conservation
Brown, G. Z. – Journal of Architectural Education, 1980
A growing awareness of environmental problems and energy scarcity has led architects and engineers to reevaluate their approaches to building design. Three approaches to combining environmental control systems with design in the Department of Architecture at the University of Oregon are discussed. (MLW)
Descriptors: Architectural Education, Building Design, Climate Control, Design
Meckler, Gershon – 1967
Comments on the need for integrated design of lighting, heating, and cooling systems. In order to eliminate the penalty of refrigerating the lighting heat, minimize the building non-usable space, and optimize the total energy input, a "systems approach" is recommended. This system would employ heat-recovery techniques based on the…
Descriptors: Air Conditioning, Building Design, Climate Control, Controlled Environment
Givoni, Baruch – Journal of Architectural Education, 1979
The combination of the creative and technical aspects of research is illustrated by the methodologies used in three research projects: research on building design in relation to climate, environmental physiology, and utilization of natural energy for the heating and cooling of buildings. (JMF)
Descriptors: Architects, Architectural Research, Building Design, Climate Control
Dunklee, Dennis R.; Silberman, Richard M. – School Business Affairs, 1991
Sick building syndrome (SBS) is a situation in which at lease 15-20 percent of a building's occupants exhibit physical symptoms in a pattern that is linked to the building in which they work. Describes health effect, factors and causes of SBS, implications for risk management, and precautions school officials should take. (MLF)
Descriptors: Air Pollution, Building Design, Climate Control, Court Litigation
Council of Educational Facility Planners, Columbus, OH. – 1976
Because today's schools consume large amounts of energy and, consequently, pay high energy bills, the term "energy cirsis" is no exaggeration to describe the situation facing educators and school administrators. Schools everywhere are under pressure to use less electricity, natural gas, heating oil, and gasoline. While energy conservation…
Descriptors: Air Conditioning, Building Design, Climate Control, Educational Facilities Design
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
Navarro Coll., Corsicana, TX. – 1979
This module is the eighth in a series of eleven modules in an energy conservation curriculum for secondary and postsecondary vocational students. It is designed for use by itself or as part of a sequence of four modules on conservation in building construction and operation (see also modules 9-11). The objective of this module is to train students…
Descriptors: Building Design, Climate Control, Conservation Education, Construction Needs
Hastings, S. Robert; Crenshaw, Richard W. – 1977
A multitude of design strategies are available to achieve energy-efficient windows. Opportunities for improving window performance fall into six groups: site, exterior appendages, frame, glazing, interior accessories, and building interior. Design strategies within these groups can improve one or more of the six energy functions of windows: solar…
Descriptors: Building Design, Climate Control, Construction Materials, Design Requirements
Ontario Dept. of Education, Toronto. – 1975
This booklet makes suggestions regarding space relationships, location, size, and technical requirements of physical and health education facilities. The facilities may include all or some of the following instructional areas: gymnasium, auxiliary open-space area, indoor area (classroom), ancillary area, and swimming pool. (Author)
Descriptors: Building Design, Climate Control, Construction Materials, Facility Guidelines
Educational Facilities Labs., Inc., New York, NY. – 1978
This is an update of the 1973 edition of a guide for energy conservation in schools. This Educational Facilities Laboratories publication is an information source for teachers, school administrators, school maintenance personnel, school designers, or anyone interested in conserving energy in schools. Topics discussed include: (1) life-cycle…
Descriptors: Administrator Guides, Building Design, Building Operation, Climate Control
Building Systems Information Clearinghouse, Menlo Park, CA. – 1974
This energy conservation workbook series was developed to provide specific data on the effect of various design and operating decisions on both cost and energy consumption. It is designed to make clear the energy consumption and cost implications of various building design and operating decisions in terms that both the layman and design…
Descriptors: Building Conversion, Building Design, Climate Control, Construction Materials
1977
This publication is the design development presentation for an energy-conserving elementary school building proposed for Alief, Texas. Some of the energy conservation features presented in this proposal include: (1) wind powered emergency electrical system; (2) complete insulation resulting in a building with an over-all U factor of .04; (3) air…
Descriptors: Air Conditioning, Building Design, Building Systems, Climate Control
Davis, Albert J.; Schubert, Robert P. – 1977
This publication provides a discussion of various energy conserving building systems and design alternatives. The information presented here covers alternative space and water heating systems, and energy conserving building designs incorporating these systems and other energy conserving techniques. Besides water, wind, solar, and bio conversion…
Descriptors: Alternative Energy Sources, Building Design, Building Systems, Climate
Modern Schools, 1975
Six innovative school designs illustrate the shape of things to come. (Author/MLF)
Descriptors: Air Structures, Architectural Character, Building Design, Climate Control