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Spancrete Industries: Precast Concrete Passive Applications. Final Report
On the thesis that concrete, being a massive material, can store large quantities of heat, a proposal was made for research, design, and development of precast concrete passive solar building systems. Warehouses and manufacturing buildings were to be the primary market for the proposed systems. Offices and school buildings were seen as secondary potential markets to be explored in later stages. The precast concrete industry is described, including precast concrete production and market applications by building type. Thermal storage walls are described, and thermal and economic analyses are performed. Hollow core floor thermal storage is also discussed in the case of an office building. (ERA citation 07:061126)
Spancrete Industries: Precast Concrete Passive Applications. Final Report
On the thesis that concrete, being a massive material, can store large quantities of heat, a proposal was made for research, design, and development of precast concrete passive solar building systems. Warehouses and manufacturing buildings were to be the primary market for the proposed systems. Offices and school buildings were seen as secondary potential markets to be explored in later stages. The precast concrete industry is described, including precast concrete production and market applications by building type. Thermal storage walls are described, and thermal and economic analyses are performed. Hollow core floor thermal storage is also discussed in the case of an office building. (ERA citation 07:061126)
Spancrete Industries: Precast Concrete Passive Applications. Final Report
1982
198 pages
Report
Keine Angabe
Englisch
Architectural Design & Environmental Engineering , Solar Energy , Heating & Cooling Systems , Construction Materials, Components, & Equipment , Passive solar heating systems , Concretes , Production , Uses , Trombe walls , Floors , Office buildings , Thermal analysis , Economic analysis , Thermal mass , Performance , Concrete blocks , Architecture , Mechanical structures , Simulation , Heat storage , Convection , ERDA/140901
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