Resumé

A multi layered breathing envelope is developed as a method of natural ventilation. The two main layers consist of mineral wool and air permeable concrete. The mineral wool works as a dynamic insulation and the permeable concrete as a heat recovery system with a high thermal mass for heat storage. The performance of the envelope is simulated and put through an optimization process. The impact of a design system on the architectural potential of Performance -based design was investigated.
OriginalsprogEngelsk
TiteleCAADe 2014: Fusion - Data Integration at its best : Proceedings of the 32nd International Conference on Education and research in Computer aided Architectural Design in Europe
RedaktørerEmine Mine Thompson
Antal sider6
Vol/bind2
Udgivelses stedNewcastle
ForlageCAADe
Publikationsdato2014
Sider117-122
ArtikelnummerPaper nr. 175
ISBN (Trykt)9789491207075
StatusUdgivet - 2014
BegivenhedeCAADe 2014 : Fusion - Data Integration at its best: The International Conference on Education and research in Computer aided Architectural Design in Europe - Northumbria University, Newcastle upon Tyne, England, Storbritannien
Varighed: 10 sep. 201412 sep. 2014
Konferencens nummer: 32

Konference

KonferenceeCAADe 2014 : Fusion - Data Integration at its best
Nummer32
LokationNorthumbria University
LandStorbritannien
ByNewcastle upon Tyne, England
Periode10/09/201412/09/2014

Fingerprint

Mineral wool
Concretes
Heat storage
Waste heat utilization
Ventilation
Insulation
Air

Citer dette

Lund Larsen, A., Foged, I. W., & Jensen, R. L. (2014). Multi-layered breathing architectural envelope. I E. M. Thompson (red.), eCAADe 2014: Fusion - Data Integration at its best: Proceedings of the 32nd International Conference on Education and research in Computer aided Architectural Design in Europe (Bind 2, s. 117-122). [Paper nr. 175] Newcastle: eCAADe.
Lund Larsen, Andreas ; Foged, Isak Worre ; Jensen, Rasmus Lund. / Multi-layered breathing architectural envelope. eCAADe 2014: Fusion - Data Integration at its best: Proceedings of the 32nd International Conference on Education and research in Computer aided Architectural Design in Europe. red. / Emine Mine Thompson. Bind 2 Newcastle : eCAADe, 2014. s. 117-122
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title = "Multi-layered breathing architectural envelope",
abstract = "A multi layered breathing envelope is developed as a method of natural ventilation. The two main layers consist of mineral wool and air permeable concrete. The mineral wool works as a dynamic insulation and the permeable concrete as a heat recovery system with a high thermal mass for heat storage. The performance of the envelope is simulated and put through an optimization process. The impact of a design system on the architectural potential of Performance -based design was investigated.",
keywords = "Architectural envelope, Performance-based architecture, Air permeable concrete",
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Lund Larsen, A, Foged, IW & Jensen, RL 2014, Multi-layered breathing architectural envelope. i EM Thompson (red.), eCAADe 2014: Fusion - Data Integration at its best: Proceedings of the 32nd International Conference on Education and research in Computer aided Architectural Design in Europe. bind 2, Paper nr. 175, eCAADe, Newcastle, s. 117-122, eCAADe 2014 : Fusion - Data Integration at its best, Newcastle upon Tyne, England, Storbritannien, 10/09/2014.

Multi-layered breathing architectural envelope. / Lund Larsen, Andreas; Foged, Isak Worre; Jensen, Rasmus Lund.

eCAADe 2014: Fusion - Data Integration at its best: Proceedings of the 32nd International Conference on Education and research in Computer aided Architectural Design in Europe. red. / Emine Mine Thompson. Bind 2 Newcastle : eCAADe, 2014. s. 117-122 Paper nr. 175.

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

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AB - A multi layered breathing envelope is developed as a method of natural ventilation. The two main layers consist of mineral wool and air permeable concrete. The mineral wool works as a dynamic insulation and the permeable concrete as a heat recovery system with a high thermal mass for heat storage. The performance of the envelope is simulated and put through an optimization process. The impact of a design system on the architectural potential of Performance -based design was investigated.

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KW - Performance-based architecture

KW - Air permeable concrete

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Lund Larsen A, Foged IW, Jensen RL. Multi-layered breathing architectural envelope. I Thompson EM, red., eCAADe 2014: Fusion - Data Integration at its best: Proceedings of the 32nd International Conference on Education and research in Computer aided Architectural Design in Europe. Bind 2. Newcastle: eCAADe. 2014. s. 117-122. Paper nr. 175