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Showing 16 to 30 of 41 results Save | Export
Fazio, James R., Ed. – Tree City USA Bulletin, 1991
This document might easily have been called "How To Use Trees To Save Energy". It presents the energy saving advantages of landscaping the home and community with trees. The discussion includes: (1) landscaping advice to obtain the benefits of tree shade; (2) the heat island phenomenon in cities; (3) how and where to properly plant trees for…
Descriptors: Climate Control, Energy, Energy Conservation, Energy Management
Peer reviewed Peer reviewed
Cunha, George Martin – American Archivist, 1990
Overview of current trends in the preservation of library materials discusses collections conservation and management; climate control; insect and mold control; fire control; the effects of compact shelving; freezing and freeze-drying; space drying; alkaline paper; recycled paper; mass deacidification; and paper strengthening. (27 notes and…
Descriptors: Climate Control, Environmental Influences, Fire Protection, Insects
Peer reviewed Peer reviewed
Holdstock, Richard S. – Journal of Environmental Health, 1978
As energy costs rise so will concern for energy savings in institutions. In achieving these savings it will be necessary to consider health and safety criteria. Special needs for several types of institutional facilities are discussed. (RE)
Descriptors: Building Design, Climate Control, Design Requirements, Energy
Peer reviewed Peer reviewed
McColl, Robert W. – Journal of Geography, 1978
Examines methods for determining thermal efficiency and measuring heat loss in the home. Suggests ways to conserve energy based upon (1) climatic environment and its impact on a structure, (2) physical location of buildings and their microclimate, and (3) behavior modification of the inhabitants. (Author)
Descriptors: Climate Control, Conservation Education, Ecological Factors, Energy Conservation
Peer reviewed Peer reviewed
Brubaker, C. William – CEFP Journal, 1976
Buildings can be designed in harmony with the natural environment, and new techniques of "active" solar design exist to collect and use solar energy for space heating and cooling. Preservation and reuse of existing buildings and neighborhoods are other ways to conserve energy. (Author/MLF)
Descriptors: Building Conversion, Building Design, Climate, Climate Control
Peer reviewed Peer reviewed
Woodley, William L. – Science, 1970
Descriptors: Aerospace Technology, Climate, Climate Control, Earth Science
Wood Lee, Mary – 1988
This study focuses on the prevention and basic treatment of recurring mold growth in tropical climates where library-wide environmental control is not always possible. The introduction discusses major climatic groups; the effects of climate on specific materials found in library resources; and the range of options for modifying the environment.…
Descriptors: Climate, Climate Control, Emergency Programs, Environmental Influences
Harmon, Darell Boyd – 1950
Because of the intensity factors involved in school tasks, and the importance of schooling in determining the child's future in this complex civilization, the energy organizations and physical limits of the classroom are probably the most significant of all the factors encountered in shaping the child's ultimate social form. Very little is known…
Descriptors: Biochemistry, Child Development, Classroom Environment, Climate
Levy, Alan – Journal of Architectural Education, 1980
The Total Studio, an ideal pedagogical construct, representing the holistic approach to architectural education is described. The design studio is seen as offering the best opportunity for teaching architecture and it is the only environment in which all aspects of architectural ideas and skills can be learned. (MLW)
Descriptors: Architectural Education, Building Design, Climate Control, Construction (Process)
Brown, G. Z.; And Others – 1996
This paper describes a study that developed innovations that would enable modular builders to improve the energy performance of their classrooms without increasing their first cost. The Modern Building Systems' classroom building conforms to the stringent Oregon and Washington energy codes, and, at $18 per square foot, it is at the low end of the…
Descriptors: Climate Control, Cost Effectiveness, Design Requirements, Elementary Secondary Education
Wyon, D. P. – Journal of Architectural Research, 1974
Descriptors: Building Design, Climate Control, Controlled Environment, Environmental Influences
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
Harmon, Darell Boyd – 1953
The classroom environment is a working surround in which children, through participating in organized experiences, can grow and develop in an optimum manner. Classroom design requires organization of principles of environmental control in order to assure efficient and successful performance. This control cannot be left to chance. In considering…
Descriptors: Classroom Environment, Climate Control, Controlled Environment, Design Requirements
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
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