2 edition of evaluation of thermal energy conservation schemes for an experimental masonry building found in the catalog.
evaluation of thermal energy conservation schemes for an experimental masonry building
Parambir S. Gujral
by U.S. Dept. of Commerce, National Bureau of Standards in Washington
Written in English
|Statement||Parambir S. Gujral, Raymond J. Clark, Douglas M. Burch.|
|Series||NBS building science series -- 137|
|Contributions||Clark, Raymond J., Burch, Douglas M.|
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Get this from a library. An evaluation of thermal energy conservation schemes for an experimental masonry building.
[Parambir S Gujral; Raymond J Clark; D M Burch; Center for Building Technology.; Skidmore, Owings & Merrill.; Jāmiʻat al-Malik ʻAbd al-ʻAzīz (Makkah campus)]. Airports--Environmental aspects Airports--Planning Allen, Davis Brewster, Architects Architectural firms Architectural practice, International Architecture Architecture, Modern Archives Buildings Buildings--Energy conservation Buildings--Thermal properties Bunshaft, Gordon, California--Oakland Cathedral of Christ the Light (Oakland, Calif.
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Referring to thermal energy performance, traditional single-layer masonry presents critical situations in winter due to poor insulation: research based on on-site monitoring of traditional stone.
Cyclic tests on brick masonry can be a useful tool in assessing the material ductility, stiffness degradation, and energy dissipation capacity. Series of laboratory cyclic tests have been conducted on half-scale sand plast brick masonry panels, each measuring mm x mm x mm. The Phase Change Material (PCM) integrated in building envelope can decrease the energy requirement for maintaining thermal comfort by enhancing the thermal energy storage of the wall and the roof.
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ISBN Abstracts of the 15th International Brick And Block Masonry Conference Edited by Humberto Ramos Roman Guilherme Aris Parsekian. Abstract. Energy storage in building envelopes can be accomplished by means of sensible and latent heat accumulation.
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In addition to this, the UK is leading the way on the roll out of smart meters. This programme sits at the heart of our efforts to empower consumers byFile Size: 2MB. The research activity deals mainly with finite element micro modelling techniques of reinforced concrete (RC) and steel structures and structural members, experimental evaluation of the seismic behaviour of RC and masonry structures and development of low impact and integrated techniques for seismic and energy upgrading of buildings.
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McNabola is a Professor in Energy and the Environment at the Dept of Civil, Structural and Environmental Engineering, TCD. His research interests lie in the field of Environmental Fluid Dynamics where he has applied this expertise in air pollution, energy efficiency and/or water services sectors.
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