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Chase, Dennis – College and University Business, 1974
Denver Community College is moving to build the largest solar heated building in the country on their campus as a classroom-administration building. (PG)
Descriptors: Building Design, Campus Planning, Community Colleges, Design Requirements
Hanson, Jeannie; And Others – College Store Journal, 1977
Minnesota's bookstore is housed in an award-winning underground building designed to save energy and space while providing scenery. It includes vaulted ceilings, slanted windows, a recessed courtyard, platforms, mezzanines, and plants growing in bookcases. A solar energy unit supported by a federal grant is incorporated in the design. (LBH)
Descriptors: Bookstores, Building Design, College Stores, Construction (Process)
General Electric Co., Cleveland, OH. Large Lamp Dept. – 1966
Integrated systems utilizing the heating potential of lighting equipment are discussed in terms of the implications for design and the methods for evaluation and control. General principles cover heat transfer, heat from lamps and luminaires, and control of lighting heat. Suggested systems include--(1) total control systems, (2) bleed-off systems,…
Descriptors: Air Conditioning, Building Design, Building Operation, Climate Control
Jaffe, Martin; Erley, Duncan – 1980
Presented are architectural design issues associated with solar energy use, and procedures for design review committees to consider in examining residential solar installation in light of existing aesthetic goals for their communities. Recommended design review criteria include the type of solar system being used and the ways in which the system…
Descriptors: Architecture, Building Design, Building Innovation, Community Control
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
Petherbridge, P. – 1974
Formulas used in the calculation of cooling loads and indoor temperatures are employed to demonstrate the influence of various building parameters--such as thermal transmittance (U-value), solar absorptivity, and thermal storage--on the indoor thermal environment. The analysis leads to guidance on ways of limiting temperatures in naturally…
Descriptors: Architectural Research, Building Design, Climate, Construction Materials
Loudon, A. G.; Petherbridge, P. – 1968
Public building air conditioning systems, which use constant and varying heat and cooling loads, are compared and investigated. Experiments indicated that constant temperature controls based on outside air temperature alone were inefficient. Ventilating a building with outside air and the methods of doing so are cited as being the most economical…
Descriptors: Air Conditioning, Building Design, Climate Control, Construction Costs
Hutcheon, N. B. – 1964
Solar heat gains (radiation) and its effects on the building environment are discussed, in conjunction with the proper and improper use of large glass areas in the exterior walls of buildings in North America. The difficulties of solar heat gain and of controlling natural light and glare are outlined and said to influence building comfort and air…
Descriptors: Air Conditioning, Building Design, Climate, Climate Control