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The specific heat requirement of a building is not determined solely by the heat insulation of the structural parts; the choice of site, building design and passive utilisation of solar energy are also important factors in energy conservation. Concrete walls and ceilings can be adapted to the different physical requirements both by the gross densities variable within wide limits and by the combination with thermal insulating materials. The high heat storage capacity and thermal conductivity of standard concrete permit monovalent operation of heat pump heating systems with energy absorbers made of concrete. (ERA citation 10:020921)
The specific heat requirement of a building is not determined solely by the heat insulation of the structural parts; the choice of site, building design and passive utilisation of solar energy are also important factors in energy conservation. Concrete walls and ceilings can be adapted to the different physical requirements both by the gross densities variable within wide limits and by the combination with thermal insulating materials. The high heat storage capacity and thermal conductivity of standard concrete permit monovalent operation of heat pump heating systems with energy absorbers made of concrete. (ERA citation 10:020921)
Energy Saving Buildings with Concrete
J. Brandt (author)
1984
22 pages
Report
No indication
English
Architectural Design & Environmental Engineering , Policies, Regulations & Studies , Heating & Cooling Systems , Solar Energy , Building Materials , Buildings , Concretes , Density , ERDA/320101 , Economic Analysis , Energy Conservation , Experimental Data , Federal Republic of Germany , Foreign technology , Heat Losses , Heat Pumps , Heat Storage , Houses , Orientation , Regulations , Specific Heat , Thermal Conductivity , Thermal Insulation , Thickness , Translations , Walls , Windows
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