Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes

碩士 === 國立成功大學 === 建築學系 === 106 === Building performance simulation and optimization technology in building design computation has been significant development in the past several years. Traditional iteration between generation and optimization depends on respectively synthesis and analysis. The inte...

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Main Authors: Tsung-HuangChen, 陳宗煌
Other Authors: Yaw-Shyan Tsay
Format: Others
Language:en_US
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/wzu6zh
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spelling ndltd-TW-106NCKU52220242019-05-16T01:07:58Z http://ndltd.ncl.edu.tw/handle/wzu6zh Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes 形式追隨能量_基於環境參數的遮陽立面設計 Tsung-HuangChen 陳宗煌 碩士 國立成功大學 建築學系 106 Building performance simulation and optimization technology in building design computation has been significant development in the past several years. Traditional iteration between generation and optimization depends on respectively synthesis and analysis. The integrated process of multi-domain simulation for optimization purposes gain successive iterations, it more effective and flexible for architects to achieve the better environment design and energy savings. This paper attempts to develop a parametric workflow that allows for greater integration of energy simulation data into the design process. Besides, the prototype of a self-shading facade built in a thermal testing lab located in N.C.K.U had been measured to collect the data of daylight level. The data from the actual measure were be used to demonstrate potential of the proposed workflow. Yaw-Shyan Tsay Kane Yanagawa 蔡耀賢 柳川肯 2018 學位論文 ; thesis 49 en_US
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language en_US
format Others
sources NDLTD
description 碩士 === 國立成功大學 === 建築學系 === 106 === Building performance simulation and optimization technology in building design computation has been significant development in the past several years. Traditional iteration between generation and optimization depends on respectively synthesis and analysis. The integrated process of multi-domain simulation for optimization purposes gain successive iterations, it more effective and flexible for architects to achieve the better environment design and energy savings. This paper attempts to develop a parametric workflow that allows for greater integration of energy simulation data into the design process. Besides, the prototype of a self-shading facade built in a thermal testing lab located in N.C.K.U had been measured to collect the data of daylight level. The data from the actual measure were be used to demonstrate potential of the proposed workflow.
author2 Yaw-Shyan Tsay
author_facet Yaw-Shyan Tsay
Tsung-HuangChen
陳宗煌
author Tsung-HuangChen
陳宗煌
spellingShingle Tsung-HuangChen
陳宗煌
Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes
author_sort Tsung-HuangChen
title Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes
title_short Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes
title_full Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes
title_fullStr Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes
title_full_unstemmed Performative Self-shading Facade: Multi-Domain Integration optimization through evolutionary design processes
title_sort performative self-shading facade: multi-domain integration optimization through evolutionary design processes
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/wzu6zh
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AT chénzōnghuáng xíngshìzhuīsuínéngliàngjīyúhuánjìngcānshùdezhēyánglìmiànshèjì
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