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Matana Júnior, Sidnei; Antonio Leite Frandoloso, Marcos; Barbosa Brião, Vandré – International Journal of Sustainability in Higher Education, 2023
Purpose: Energy consumption and renewable energy sources are included in the goals for the 2030 Sustainable Development Goal 7 (SDG7) agenda, and target buildings are the biggest electricity consumers. In turn, Netzero energy buildings (NZEB) contribute to achieve SDG7 goals. This paper aims to identify which Brazilian higher education…
Descriptors: Higher Education, Energy Conservation, Conservation (Environment), Objectives
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Iwan, Ailin; Rao, Nirmala; Poon, Kenneth K. Y. – Journal of Education for Sustainable Development, 2018
Award-winning Green Preschools in Bali, Berkeley and Hong Kong were selected to explore the characteristics of Green Schools using measures developed by educators (Environmental Rating Scale for Sustainable Development in Early Childhood (ERS-SDEC)) and architects (simplified Leadership in Energy and Environmental Design (LEED) development).…
Descriptors: Foreign Countries, Conservation (Environment), Institutional Characteristics, Awards
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Fonseca, Paula; Moura, Pedro; Jorge, Humberto; de Almeida, Aníbal – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this study was to design a renovation plan for a university campus building (Department of Electrical and Computer Engineering) with the aim to achieve nearly zero energy performance, ensuring a low specific demand (lower than 44 kWh/m[superscript 2]) and a high level of on-site renewable generation (equivalent to more than…
Descriptors: Sustainability, Energy Conservation, Engineering Education, Audits (Verification)
Kennedy, Mike – American School & University, 2010
When the subject of buildings and daylighting arises, most people's thoughts will turn first to windows. To the uninitiated, it seems a simple formula: more windows, more daylight; fewer windows, less daylight. But designers know that effective use of daylighting in a building design involves more than just letting in light to otherwise darkened…
Descriptors: Building Design, Energy Conservation, Energy Management, Energy
Utebay, Kudret – Educational Facility Planner, 2011
Every building, from the smallest school to the tallest skyscraper, uses energy. This energy is most often generated by burning fossil fuels, which releases greenhouse gases into the atmosphere and contributes to climate change. Existing commercial buildings offer a significant opportunity for low-cost, immediate emissions and energy cost…
Descriptors: Building Design, Fuels, Energy Conservation, Climate
Baker, Lindsay – National Clearinghouse for Educational Facilities, 2012
Public education is one of the central tasks of a democratic society, and the buildings that house this important task not only shape the way one teaches, but provide icons and symbols for the values people hold common as a society. Perhaps unsurprisingly, this context has placed school buildings squarely in a position of debate and innovation…
Descriptors: Foreign Countries, Developed Nations, Educational Facilities Design, School Buildings
Nation's Schools and Colleges, 1974
Notes on new building designs that conserve energy by taking advantage of natural resources. (JF)
Descriptors: Building Design, Colleges, Elementary Schools, Energy Conservation
Downey, Gregg W. – American School Board Journal, 1977
Dozens of schools throughout North America already are putting solar equipment to limited uses, scores are conducting or contemplating solar feasibility studies, and at least one school now in operation is applying solar power to every phase of its energy program. (Author)
Descriptors: Building Design, Elementary Secondary Education, Energy Conservation, Program Descriptions
Brubaker, C. William – American School Board Journal, 1979
Presents drawings of three buildings to show ways of designing for energy conservation, accommodation of the handicapped, and the conversion of surplus schools to other uses. (IRT)
Descriptors: Architectural Barriers, Building Conversion, Building Design, Elementary Secondary Education
Moses, Manfred – American School Board Journal, 1977
Descriptors: Building Design, Climate Control, Consultants, Costs
Rist, Marilee C. – American School Board Journal, 1989
The 1979 passive solar design for Meadow Park Elementary School (Irvine, California) was not used until 1986. Architects had incorporated workable energy-saving features that would give a sizable return on the investment. They maximized use of natural light and used solar features (clerestory windows and interior courtyards) to reduce heat…
Descriptors: Building Design, Educational Facilities Planning, Elementary Education, Energy Conservation
School Planning & Management, 2002
Offers tips on energy efficiency and building design that can help schools reduce operating costs, improve academic performance, address health and safety issues, and protect the environment. (EV)
Descriptors: Building Design, Educational Facilities Design, Educational Facilities Improvement, Energy Conservation
O'Sullivan, P. E.; Cole, R. J. – Journal of Architectural Research, 1974
Attempts to compare the thermal environment measured within schools with current prediction methods and the energy used to produce and maintain the thermal environment with that predicted. Argues that a more exact definition of the external climate for design purposes is needed and suggests such a definition. (Author/EA)
Descriptors: Building Design, Energy Conservation, Measurement, Open Plan Schools
Nation's Schools, 1974
Presents 17 design ideas to harness man-made materials, the sun, wind, and even the earth to conserve energy in new or remodeled buildings. (Author)
Descriptors: Building Conversion, Building Design, Cost Effectiveness, Educational Facilities Design
Estes, R. C. – 1978
This document is a description of the energy efficient designs for new schools in the Alief Independent School District of Houston, Texas. Exhibit A shows how four major school projects differ from conventional designs. Parameters and designs for heating, ventilating, air conditioning, and lighting are given. Twenty year projected energy costs and…
Descriptors: Air Conditioning, Building Design, Conservation Education, Educational Facilities
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