Applying analytic hierarchy process to the evaluation of double skin facades

被引:11
作者
Bostancioglu, Esra [1 ]
Onder, N. Pinar [2 ,3 ]
机构
[1] Istanbul Kultur Univ, Architecture Dept, Istanbul, Turkey
[2] Istanbul Eyup Municipal, Istanbul, Turkey
[3] Onderhan Construct, Istanbul, Turkey
关键词
Double-skin facade (DSF); analytic hierarchy process (AHP); multi-storey DSF; corridor DSF; shaft box DSF; box window DSF; LIFE-CYCLE ASSESSMENT; PROCESS AHP; SELECTION; ENERGY; BUILDINGS; MODEL; PERSPECTIVES; PERFORMANCE; VENTILATION; TECHNOLOGY;
D O I
10.1080/17452007.2018.1515062
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A double skin facade (DSF) mediates the interaction between the outdoor environment and internal space, while also providing architectural flexibility to the building design. Designers and builders should evaluate DSF alternatives before selection of a design solution for a specific project context. In this study, Analytic Hierarchy Process (AHP) was used to evaluate questionnaire responses from experienced professionals. DSF alternatives and evaluation criteria were identified from the literature review and the hierarchical structure was determined based on the alternatives and the evaluation criteria. The evaluation criteria were used to measure and evaluate DSF. Experienced professionals evaluated criteria and DSF alternatives. The findings of this study provide designers and builders with valuable insights into DSF evaluation factors and DSF alternatives. The results may help designers and builders with the selection of facade systems.
引用
收藏
页码:66 / 82
页数:17
相关论文
共 58 条
[21]   Natural cooling strategies efficiency in an office building with a double-skin facade [J].
Gratia, E ;
De Herde, A .
ENERGY AND BUILDINGS, 2004, 36 (11) :1139-1152
[22]   Are energy consumptions decreased with the addition of a double-skin? [J].
Gratia, Elisabeth ;
De Herde, Andre .
ENERGY AND BUILDINGS, 2007, 39 (05) :605-619
[23]   The most efficient position of shading devices in a double-skin facade [J].
Gratia, Elisabeth ;
De Herde, Andre .
ENERGY AND BUILDINGS, 2007, 39 (03) :364-373
[24]   Greenhouse effect in double-skin facade [J].
Gratia, Elisabeth ;
De Herde, Andre .
ENERGY AND BUILDINGS, 2007, 39 (02) :199-211
[25]  
Gu Seon-Hwan, 2014, [Fire Science and Engineering, 한국화재소방학회 논문지], V28, P1, DOI 10.7731/KIFSE.2014.28.1.001
[26]   Life cycle assessment of ceramic facade material and its comparative analysis with three other common facade materials [J].
Han, Baolong ;
Wang, Rusong ;
Yao, Liang ;
Liu, Hongxiao ;
Wang, Zhonghang .
JOURNAL OF CLEANER PRODUCTION, 2015, 99 :86-93
[27]   Utilizing cavity flow within double skin facade for wind energy harvesting in buildings [J].
Hassanli, Sina ;
Hu, Gang ;
Kwok, Kenny C. S. ;
Fletcher, David F. .
JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2017, 167 :114-127
[28]   Building simulation as an assisting tool in decision making - Case study: With or without a double-skin facade? [J].
Hoseggen, R. ;
Wachenfeldt, B. J. ;
Hanssen, S. O. .
ENERGY AND BUILDINGS, 2008, 40 (05) :821-827
[29]   Wind-induced responses of a tall building with a double-skin facade system [J].
Hu, Gang ;
Hassanli, Sina ;
Kwok, K. C. S. ;
Tse, K. T. .
JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2017, 168 :91-100
[30]   Genetic algorithm solution for a risk-based partner selection problem in a virtual enterprise [J].
Ip, WH ;
Huang, M ;
Yung, KL ;
Wang, DW .
COMPUTERS & OPERATIONS RESEARCH, 2003, 30 (02) :213-231