GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE

The construction of a sustainable building in Indonesia has increased in recent years. Middle- to high-rise buildings are encouraged to enhance its performance to reduce energy demands. With maximum temperature 34°C, most of the buildings in Indonesia utilize mechanical air conditioning to achieve i...

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Main Authors: Nissa Aulia Ardiani, M. Donny Koerniawan
Format: Article
Language:English
Published: Petra Christian University 2017-12-01
Series:Dimensi: Journal of Architecture and Built Environment
Subjects:
Online Access:http://puslit2.petra.ac.id/ejournal/index.php/ars/article/view/20520
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author Nissa Aulia Ardiani
M. Donny Koerniawan
author_facet Nissa Aulia Ardiani
M. Donny Koerniawan
author_sort Nissa Aulia Ardiani
collection DOAJ
description The construction of a sustainable building in Indonesia has increased in recent years. Middle- to high-rise buildings are encouraged to enhance its performance to reduce energy demands. With maximum temperature 34°C, most of the buildings in Indonesia utilize mechanical air conditioning to achieve indoor thermal comfort. In this research, the performance of campus building with Double Skin Façade (DSF) in Indonesia would be quantitatively assessed and simulated by utilizing Autodesk Revit and Green Building Studio. In respect to façade material, actual cavity width, inner and outer layer façade type, and also weather condition, these simulations are expected to produce comparison result between four DSF material configurations which are perforated metal, single glazing, double glazing, and triple glazing. From the simulation, the results show that perforated metal DSF could consume 5%-23.16% more energy for space cooling compared to building with glass DSF.
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spelling doaj.art-ae0fb25299784627bee71cdf6a713e9d2024-02-02T18:56:27ZengPetra Christian UniversityDimensi: Journal of Architecture and Built Environment0126-219X2338-78582017-12-01442143148GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATENissa Aulia Ardiani0M. Donny Koerniawan1 The construction of a sustainable building in Indonesia has increased in recent years. Middle- to high-rise buildings are encouraged to enhance its performance to reduce energy demands. With maximum temperature 34°C, most of the buildings in Indonesia utilize mechanical air conditioning to achieve indoor thermal comfort. In this research, the performance of campus building with Double Skin Façade (DSF) in Indonesia would be quantitatively assessed and simulated by utilizing Autodesk Revit and Green Building Studio. In respect to façade material, actual cavity width, inner and outer layer façade type, and also weather condition, these simulations are expected to produce comparison result between four DSF material configurations which are perforated metal, single glazing, double glazing, and triple glazing. From the simulation, the results show that perforated metal DSF could consume 5%-23.16% more energy for space cooling compared to building with glass DSF.http://puslit2.petra.ac.id/ejournal/index.php/ars/article/view/20520Double skin façade; perforated metal; building performance.
spellingShingle Nissa Aulia Ardiani
M. Donny Koerniawan
GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE
Dimensi: Journal of Architecture and Built Environment
Double skin façade; perforated metal; building performance.
title GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE
title_full GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE
title_fullStr GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE
title_full_unstemmed GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE
title_short GLASS AND PERFORATED METAL DOUBLE SKIN FAÇADE PERFORMANCE IN HOT HUMID CLIMATE
title_sort glass and perforated metal double skin facade performance in hot humid climate
topic Double skin façade; perforated metal; building performance.
url http://puslit2.petra.ac.id/ejournal/index.php/ars/article/view/20520
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