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  • 标题:Convective Concrete: additive manufacturing to facilitate activation of thermal mass
  • 本地全文:下载
  • 作者:Dennis de Witte ; Ulrich Knaack ; Marie de Klijn-Chevalerias
  • 期刊名称:Spool
  • 印刷版ISSN:2215-0897
  • 电子版ISSN:2215-0900
  • 出版年度:2017
  • 卷号:4
  • 期号:2
  • 页码:13-16
  • DOI:10.7480/spool.2017.2.1919
  • 出版社:TU Delft Open
  • 摘要:Convective Concrete is about a research-driven design process of an innovative thermal mass concept. The goal is to improve building energy efficiency and comfort levels by addressing some of the shortcomings of conventional building slabs with high thermal storage capacity. Such heavyweight constructions tend to have a slow response time and do not make use of the available thermal mass effectively. Convective Concrete explores new ways of using thermal mass in buildings more intelligently. To accomplish this ondemand charging of thermal mass, a network of ducts and fans is embedded in the concrete wall element. This is done by developing customized formwork elements in combination with advanced concrete mixtures. To achieve an efficient airflow rate, the embedded lost formwork and the concrete itself function like a lung.
  • 其他摘要:Convective Concrete is about a research-driven design process of an innovative thermal mass concept. The goal is to improve building energy efficiency and comfort levels by addressing some of the shortcomings of conventional building slabs with high thermal storage capacity. Such heavyweight constructions tend to have a slow response time and do not make use of the available thermal mass effectively. Convective Concrete explores new ways of using thermal mass in buildings more intelligently. To accomplish this ondemand charging of thermal mass, a network of ducts and fans is embedded in the concrete wall element. This is done by developing customized formwork elements in combination with advanced concrete mixtures. To achieve an efficient airflow rate, the embedded lost formwork and the concrete itself function like a lung.
  • 关键词:concrete; thermal storage capacity; thermal mass; Additive Manufacturing
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