Best Practice in Steel Construction - Commercial Buildings
Author: The Steel Construction Institute. | Size: 1.58 MB | Format: PDF | Publisher: The Steel Construction Institute. | Year: 2008 | pages: 56 | ISBN: 978-1-85942-130-7
This publication presents best practice for the design of steel construction technologies used in commercial buildings, and is aimed at architects and other members of the design team in the early stages of planning a commercial building project. It was prepared as one of a series of three under an RFCS dissemination project Euro-Build in Steel (Project n° RFS2-CT-2007-00029).
The project’s objective is to present design information on best practice in steel, and to take a forward look at the next generation of steel buildings. The other publications cover best design practice in industrial and residential buildings.
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Best Practice in Steel Construction - Industrial Buildings
Author: The Steel Construction Institute. | Size: 2.38 MB | Format: PDF | Publisher: The Steel Construction Institute. | Year: 2008 | pages: 60 | ISBN: 978-1-85942-063-8
The Steel Construction Institute (SCI) develops and promotes the effective use of steel in construction. It is an independent, membership based organisation. SCI’s research and development
activities cover multi-storey structures, industrial buildings, bridges, civil engineering and offshore engineering. Activities encompass design guidance on structural steel, light steel and stainless steels, dynamic performance, fire engineering, sustainable construction, architectural design, building physics (acoustic and thermal performance), value engineering, and information technology.
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Best Practice in Steel Construction - Residential Buildings
Author: The Steel Construction Institute. | Size: 2.89 MB | Format: PDF | Publisher: The Steel Construction Institute. | Year: 2008 | pages: 68 | ISBN: 978-1-85942-001-0
The design of housing and residential buildings is influenced by many factors, including new requirements for sustainability, and thermal and acoustic performance. The environmental need to conserve land use, whilst improving the social characteristics of the built environment, also have a direct effect on the choice of constructional system.
The pressure for more efficient and sustainable construction processes to meet these challenges has led to a demand for higher degrees of prefabrication and improved quality in the performance of the chosen construction technology.
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