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Harkness, Sarah P. – AIA Journal, 1981
The sun makes its own terms, and they must be acknowledged. The response to these terms is apparent in sections of solar buildings used for high-density development or homes. (Author/MLF)
Descriptors: Architectural Programing, Architectural Research, Building Design, Heat Recovery
Murphy, Jim – Progressive Architecture, 1980
The design team for the Solar Energy Research Institute (SERI) has pushed the state of the energy art to its current limits for the initial phase, with provisions for foreseeable and even speculative future applications. (Author/MLF)
Descriptors: Architectural Programing, Building Innovation, Heat Recovery, Modular Building Design
Morton, David – Progressive Architecture, 1979
At the University of Southern California solar-access design research project, Barry Knowles and students have devised a solar envelope: the largest volumetric container over a land parcel that allows solar access to all adjacent neighbors within useful time constraints. (Author/MLF)
Descriptors: Architectural Research, Building Design, Court Litigation, Energy Conservation
Morton, David – Progressive Architecture, 1980
At the Shenandoah Solar Recreation Center in Georgia, solar energy is used not only for heating and cooling, but also for ice making. (Author/MLF)
Descriptors: Air Conditioning, Building Design, Community Centers, Energy Conservation
Balcomb, J. Douglas – Progressive Architecture, 1979
A leading passive solar heating expert advocates more extensive uses, outlines various familiar approaches, and evaluates many existing built examples. (Author/MLF)
Descriptors: Air Flow, Architectural Research, Building Design, Building Innovation
Stephens, Suzanne – Progressive Architecture, 1979
In the current period of questioning of architectural values and directions, the implications of energy use on form must be confronted sooner or later. Efforts by various practitioners at combining art and technology are shown. (Author/MLF)
Descriptors: Architectural Character, Architectural Research, Building Design, Building Innovation
Peer reviewed Peer reviewed
Pollack, George; Pollack, Mary – Community and Junior College Journal, 1982
Describes the development of Mississippi County Community College's (MCCC's) solar energy system. Explains the functioning of the campus's computer-controlled photovoltaic concentrator system, MCCC's cooperative agreement with the Arkansas-Missouri Power Company, program funding, the integration of the solar system with other building components,…
Descriptors: Building Design, Building Innovation, Community Colleges, Power Technology
Solar Age, 1980
The detachable magazine segment is a guide to sources of solar energy information sources. Included are (1) organizations; (2) bibliographies; (3) educational materials; (4) audiovisuals; (5) analytical tools; (6) construction plows; (7) directories and catalogues; and (8) miscellaneous. (Author/RE)
Descriptors: Audiovisual Aids, Building Design, Energy, Energy Conservation
Oddo, Sandra – Progressive Architecture, 1979
The design and effectiveness of a number of government/industry active solar demonstration projects. (Author/MLF)
Descriptors: Architectural Research, Building Design, Building Innovation, Demonstration Programs
Peer reviewed Peer reviewed
Smith, Harry V. – Planning for Higher Education, 1982
The Mississippi County Community College large-scale energy experiment, featuring the emerging high technology of solar electricity, is described. The project includes a building designed for solar electricity and a power plant consisting of a total energy photovoltaic system, and features two experimental developments. (MLW)
Descriptors: Building Design, Building Innovation, College Buildings, Electrical Systems
Peer reviewed Peer reviewed
Brubaker, C. William – Planning for Higher Education, 1982
New energy-responsible buildings will not only use less energy, but will be more comfortable, more closely attuned to nature, and will create a better learning and living environment. The most cost-effective planning decisions have to do with good passive solar design and sensible operations. (MLW)
Descriptors: Building Design, Building Innovation, Climate Control, College Buildings
Peer reviewed Peer reviewed
Bennett, David J. – Planning for Higher Education, 1982
The new Civil/Mineral Engineering Building on the University of Minnesota Minneapolis campus is a demonstration design in energy conservation and innovation in active and passive solar energy applications. Its antecedents at the university represent contributory steps in the identification of issues and the development of design principles. (MLW)
Descriptors: Building Design, Building Innovation, College Buildings, Educational Facilities Planning
Watson, Donald – Progressive Architecture, 1979
Some quantitative methods are illustrated that might be used to select design elements that are appropriate year-round and matched to the annual climate profile, and, in addition, to apportion architectural and mechanical strategies so that they complement one another. (Author/MLF)
Descriptors: Architectural Programing, Architectural Research, Building Design, Climate
Rush, Richard – Progressive Architecture, 1980
An architect designed his combination living and working structure with a central solar heated area and nine thermal zones to make the most efficient use of energy collected. (Author/MLF)
Descriptors: Air Flow, Building Design, Building Innovation, Energy Conservation
Rush, Richard – Progressive Architecture, 1980
An overview of the energy problems other countries face and an exploration of some of the directions that they have found to be fruitful. (Author/MLF)
Descriptors: Building Design, Building Innovation, Energy, Energy Conservation
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