Approach towards an ideal envelope shape design for energy efficiency and low carbon emission

The building envelope shape is the most salient design characteristic and has a significant influence on energy consumption during the post-occupancy service life and carbon emission. However, during the conceptual design phase, envelope shape finding is defined without considering the energy perfor...

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Main Authors: Jaganathan, Siva, Mohammed, Abdul Hakim, Abdul Rahman, Mohd. Shahril, Nesan, Lenin Jawahar
Format: Article
Language:English
Published: Universiti Teknologi Malaysia 2017
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Online Access:http://eprints.utm.my/id/eprint/80487/1/AbdulHakimMohammed2017_ApproachTowardsanIdealEnvelope.pdf
http://eprints.utm.my/id/eprint/80487/
http://www.utm.my/intrest/files/2017/09/05-Approach-Towards-an-Ideal-Envelope-Shape-Design-for-Energy-Efficiency-and-Low-Carbon-Emission.pdf
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spelling my.utm.804872019-05-22T06:48:25Z http://eprints.utm.my/id/eprint/80487/ Approach towards an ideal envelope shape design for energy efficiency and low carbon emission Jaganathan, Siva Mohammed, Abdul Hakim Abdul Rahman, Mohd. Shahril Nesan, Lenin Jawahar G70.212-70.215 Geographic information system The building envelope shape is the most salient design characteristic and has a significant influence on energy consumption during the post-occupancy service life and carbon emission. However, during the conceptual design phase, envelope shape finding is defined without considering the energy performance during post-occupancy service life and sustainable characteristics (i.e. low carbon emission). In addition, there is no suitable method for designers to make such calculations. To bridge the post-occupancy service life in efficiency, this research developed an ideal envelope shape finding approach to facilitate the conceptual design phase. The steady-state principle has been used to predict the thermal flow and energy impact on the aspect ratio of various shapes, and compactness. Integrated dynamic simulation and particle swarm optimization method were used to identify the optimal and sub-optimal combinations of envelope shapes for energy consumption and carbon emission. The findings of this research provide a benchmark of energy consumption characteristics of envelope shape and a cut-off range for low carbon emission envelope design. This is one of the simplified design approach facelift the conventional design process to predict post-occupancy energy performances and carbon emission impact. Universiti Teknologi Malaysia 2017 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/80487/1/AbdulHakimMohammed2017_ApproachTowardsanIdealEnvelope.pdf Jaganathan, Siva and Mohammed, Abdul Hakim and Abdul Rahman, Mohd. Shahril and Nesan, Lenin Jawahar (2017) Approach towards an ideal envelope shape design for energy efficiency and low carbon emission. International Journal of Real Estate Studies (INTREST), 11 (4). pp. 1-5. ISSN 1832-8505 http://www.utm.my/intrest/files/2017/09/05-Approach-Towards-an-Ideal-Envelope-Shape-Design-for-Energy-Efficiency-and-Low-Carbon-Emission.pdf
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic G70.212-70.215 Geographic information system
spellingShingle G70.212-70.215 Geographic information system
Jaganathan, Siva
Mohammed, Abdul Hakim
Abdul Rahman, Mohd. Shahril
Nesan, Lenin Jawahar
Approach towards an ideal envelope shape design for energy efficiency and low carbon emission
description The building envelope shape is the most salient design characteristic and has a significant influence on energy consumption during the post-occupancy service life and carbon emission. However, during the conceptual design phase, envelope shape finding is defined without considering the energy performance during post-occupancy service life and sustainable characteristics (i.e. low carbon emission). In addition, there is no suitable method for designers to make such calculations. To bridge the post-occupancy service life in efficiency, this research developed an ideal envelope shape finding approach to facilitate the conceptual design phase. The steady-state principle has been used to predict the thermal flow and energy impact on the aspect ratio of various shapes, and compactness. Integrated dynamic simulation and particle swarm optimization method were used to identify the optimal and sub-optimal combinations of envelope shapes for energy consumption and carbon emission. The findings of this research provide a benchmark of energy consumption characteristics of envelope shape and a cut-off range for low carbon emission envelope design. This is one of the simplified design approach facelift the conventional design process to predict post-occupancy energy performances and carbon emission impact.
format Article
author Jaganathan, Siva
Mohammed, Abdul Hakim
Abdul Rahman, Mohd. Shahril
Nesan, Lenin Jawahar
author_facet Jaganathan, Siva
Mohammed, Abdul Hakim
Abdul Rahman, Mohd. Shahril
Nesan, Lenin Jawahar
author_sort Jaganathan, Siva
title Approach towards an ideal envelope shape design for energy efficiency and low carbon emission
title_short Approach towards an ideal envelope shape design for energy efficiency and low carbon emission
title_full Approach towards an ideal envelope shape design for energy efficiency and low carbon emission
title_fullStr Approach towards an ideal envelope shape design for energy efficiency and low carbon emission
title_full_unstemmed Approach towards an ideal envelope shape design for energy efficiency and low carbon emission
title_sort approach towards an ideal envelope shape design for energy efficiency and low carbon emission
publisher Universiti Teknologi Malaysia
publishDate 2017
url http://eprints.utm.my/id/eprint/80487/1/AbdulHakimMohammed2017_ApproachTowardsanIdealEnvelope.pdf
http://eprints.utm.my/id/eprint/80487/
http://www.utm.my/intrest/files/2017/09/05-Approach-Towards-an-Ideal-Envelope-Shape-Design-for-Energy-Efficiency-and-Low-Carbon-Emission.pdf
_version_ 1643658427567702016
score 13.211869