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Alexandri, Eleftheria – International Association for Development of the Information Society, 2014
This paper is about the experience of teaching Assembly for Disassembly to fourth year architect students within the module of sustainable design. When designing a sustainable building one should take into consideration the fact that the building is going to be demolished in some years; thus the materials should be assembled in such a way so that…
Descriptors: Foreign Countries, Architectural Education, Undergraduate Students, Learning Modules
Fien, John; Winfree, Tomi – Prospects: Quarterly Review of Comparative Education, 2014
The construction industry is contributing to the sustainability agenda through numerous strategies to improve energy efficiency in the design, materials, and operating conditions of buildings. However, this is only one driver of change in the construction sector. This article, which takes Australia as a case study, shows that many other drivers…
Descriptors: Sustainability, Energy Management, Energy Conservation, Power Technology
Shen, Zhigang; Jensen, Wayne; Wentz, Timothy; Fischer, Bruce – Education Sciences, 2012
The cross-disciplinary nature of energy-efficient building design has created many challenges for architecture, engineering and construction instructors. One of the technical challenges in teaching sustainable building design is enabling students to quantitatively understand how different building designs affect a building's energy performance.…
Descriptors: Student Projects, Active Learning, Energy Education, Energy Management
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
Roman, Harry T. – Technology and Engineering Teacher, 2011
In this article, the author suggests a classroom challenge that will engage students in designing a house on the hill. He suggests teachers ask a local builder to come to the school to discuss the kinds of concerns that must be dealt with when building homes in cold environments. The use of dioramas and cardboard scale models would be very useful…
Descriptors: Building Design, Creative Thinking, Thinking Skills, Science Process Skills
Deal, Walter F. – Technology Teacher, 2010
Shelter has been a concern of humans and animals alike for the millennia. Animals, through their natural instincts, build nests and shelters to meet their needs for protection against predators and seasonal changes in the weather. Early humans sought shelter in caves and cliff dwellings and later began to design and build shelters based on the…
Descriptors: Environmental Education, Construction (Process), Construction Needs, Structural Elements (Construction)
Martinez, Luis A. – ProQuest LLC, 2009
In the United States, 21% of all energy is used in residential buildings (40% of which is for heating and cooling homes). Promising improvements in residential building energy efficiency are underway such as the Building America Program and the Passive House Concept. The ability of improving energy efficiency in buildings is enhanced by building…
Descriptors: Structural Elements (Construction), Conservation (Concept), Energy Conservation, Energy
Ritchey, David – School Business Affairs, 2003
Describes several ways to design or renovate school building to save thousand of dollars of energy costs. Considers site design, energy-efficient building envelope, renewable energy systems, lighting and electrical systems, mechanical and ventilation systems, water conservation, and transportation. Describes how to obtain information about the…
Descriptors: Building Design, Cost Effectiveness, Elementary Secondary 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
Design Cost Data, 2002
Describes the building of the elementary school named in the title--winner of an energy efficiency design award--including the educational context and design goals. Includes information on the architects, manufacturers/suppliers, and construction team; a general building description; and a case study of construction costs and specifications. Also…
Descriptors: Awards, Building Design, Building Plans, Construction Costs
Department of Energy, Washington, DC. Office of Energy Efficiency and Renewable Energy. – 2002
The U.S. Department of Energy's Rebuild America EnergySmart Schools program provides school boards, administrators, and design staff with guidance to help make informed decisions about energy and environmental issues important to school systems and communities. This document is part of the suite of products developed to promoteenergy efficiency…
Descriptors: Architecture, Building Design, Design Requirements, Educational Facilities
Department of Energy, Washington, DC. Office of Energy Efficiency and Renewable Energy. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
National Renewable Energy Lab. (DOE), Golden, CO. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
National Renewable Energy Lab. (DOE), Golden, CO. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
National Renewable Energy Lab. (DOE), Golden, CO. – 2002
The U.S. Department of Energy's EnergySmart Schools provides school boards, administrators, and design staff with guidance to help them make informed decisions about energy and environmental issues important to school systems and communities. The design guidelines presented in this document outline high performance principles for the new or…
Descriptors: Architecture, Building Design, Climate, Design Requirements
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