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Day, C. William – School Business Affairs, 1983
Some common sense energy conservation suggestions that can immediately lower energy use in school buildings. (MLF)
Descriptors: Building Operation, Climate Control, Cost Effectiveness, Elementary Secondary Education
American School and University, 1980
A new variable air volume system in a highrise educational building cut fuel bills $50,000 in the first year. (Author/MLF)
Descriptors: Climate Control, Cost Effectiveness, Educational Facilities Improvement, Energy Conservation
Miles, Charles H. – School Business Affairs, 1985
Energy management systems are designed to monitor and control energy consumption. A variety of these systems is described. (MLF)
Descriptors: Climate Control, Computer Oriented Programs, Cost Effectiveness, Electronic Control
Nordeen, Howard – School Business Affairs, 1983
Computer-based building management systems can cut the energy costs of heating, ventilating, and air conditioning (HVAC) systems in school buildings. Administrators are advised on how to choose the best system. (MLF)
Descriptors: Building Operation, Climate Control, Computer Oriented Programs, Electronic Control
Barzilla, Frank – School Business Affairs, 1983
Advises administrators how to develop an energy master plan and how to reduce the usage of heating, ventilating, and air conditioning (HVAC) systems by means of a time clock, thermostat, and a scheduled preventive maintenance program. (MLF)
Descriptors: Climate Control, Electronic Control, Elementary Secondary Education, Energy Conservation
School Business Affairs, 1980
The installation of proper control systems is estimated as saving up to 25 percent of the energy used in schools. Other potential energy-saving areas are transmission (heat loss or gain through walls, especially ceilings); internal load (heat from students, lights, and machinery); ventilation; and equipment maintenance. (Author/MLF)
Descriptors: Climate Control, Electronic Control, Elementary Secondary Education, Energy Conservation
Arabia, Tony – American School and University, 1984
Responding to questions about a microcomputer center in a hot summer environment and a cold winter environment, the author outlines equipment and personnel needs. (MD)
Descriptors: Building Operation, Climate Control, Educational Environment, Elementary Secondary Education
American Inst. of Architects, Washington, DC. – 1983
An energy task group of the American Institute of Architects discusses design features and options that educational facility designers can use to create an energy efficient school building. Design elements cover the building envelope, energy storage system, hydronic heating/cooling systems, solar energy collection, building orientation and shape,…
Descriptors: Climate Control, Educational Environment, Educational Facilities Design, Elementary Secondary Education
Stein, Benjamin – 1989
The American Institute of Architects National Committee on Architecture for Education presents this guide which addresses methods of energy conservation in school buildings with simple design, construction, and equipment-control technology so that trained and creative people can take over functions normally done by machinery and automated…
Descriptors: Building Operation, Climate Control, Elementary Secondary Education, Energy Conservation
American School and University, 1981
A Kansas school district uses computers, an energy management consultant, retrofitting, and school cleaning scheduling to reduce energy use. Documented results of energy use were part of successful applications by nine school administrators for retrofitting grants. (MLF)
Descriptors: Administration, Climate Control, Educational Facilities Improvement, Elementary Secondary Education
Minnesota State Dept. of Energy and Economic Development, St. Paul. – 1984
This manual is a guide for performing energy audits in school buildings using low- and no-cost measures found effective in Minnesota. The manual helps school maintenance and administrative personnel conduct walk-through inspections of school buildings, focusing on the energy efficiency of their equipment and operations. The measures recommended…
Descriptors: Climate Control, Costs, Educational Facilities, Electrical Systems
DiMercurio, C. – American School and University, 1981
This first article in a series about cooling classrooms by ventilation explains that energy consumption for one day of refrigeration cooling is equal to energy use for 35 days of ventilation cooling. Schools using only refrigeration cooling are passing up energy savings that could be provided by ventilation cooling. (Author/MLF)
Descriptors: Air Conditioning Equipment, Climate Control, Cost Effectiveness, Elementary Secondary Education
Harrison, David – 1978
The Solar Schoolhouse at the Lathrop E. Smith Environmental Education Center (Rockville, Maryland) is described. Background and construction information is given. Drawings of the Schoolhouse's four sides are provided, as well as drawings illustrating the greenhouse effect, a solar collector, the Schoolhouse's summer cooling and winter heating…
Descriptors: Building Operation, Climate Control, Diagrams, Energy Conservation
Turner, William A. – 1999
Building design and construction that helps deliver both superior air quality and occupant thermal comfort, while minimizing energy consumption, are examined. The paper explores an integrated building systems approach that combines the principles of "directed air flow control" and "demand controlled ventilation" where ventilation is effectively…
Descriptors: Climate Control, Cost Effectiveness, Educational Facilities Design, Elementary Secondary Education
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Palmer, H. Stanley; And Others – CEFP Journal, 1979
A microcomputer, when interfaced with appropriate sensing and control devices, can be used as an energy management processor to manage a building's environmental system. (Author)
Descriptors: Building Operation, Climate Control, Computer Science, Electronic Control
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