Application of system dynamics for assessment of sustainable performance of construction projects

被引:0
作者
L. Y. Shen
Y. Z. Wu
E. H. W. Chan
J. L. Hao
机构
[1] The Hong Kong Polytechnic University,Building & Real Estate Department
[2] Zhejiang University,Department of Land Management
来源
Journal of Zhejiang University-SCIENCE A | 2005年 / 6卷 / 4期
关键词
Construction project; Project life cycle; Project sustainable performance (PSP); Sustainable development ability (; ); System dynamics; Simulation; A; TU71;
D O I
10.1631/BF02842066
中图分类号
学科分类号
摘要
Sustainable performance is expected to become a major factor when examining the feasibility of a construction project in terms of its life cycle performance. The study on which this paper is based developed a simulation model, using system dynamics methodology, to assess the sustainable performance of projects. Three major factors are used to examine project sustainable performance (PSP): the sustainability of economic development (E), the sustainability of social development (S), and the sustainability of environmental development (En). Sustainable development ability (SDA) was used as a prototype to evaluate the degree of sustainalbe performance. The simulation software ‘ithink’ was used to help with the application of the model to a real life case. This paper explains and demonstrates the procedures used to develop, the model and finally offers an approach for assessing the feasibility of a construction project in terms of its sustainable performance.
引用
收藏
页码:339 / 349
页数:10
相关论文
共 32 条
[1]  
Adeli H.(1997)Scheduling-cost optimization and neural dynamics model for construction Journal of Construction Engineering and Management 123 450-458
[2]  
Karim A.(1999)Sustainability and the performance concept: encouraging innovative environmental technology in construction Building Research & Information 27 367-372
[3]  
Brochner J.(2002)System dynamics modeling of design and build construction projects Construction Innovation 2 269-295
[4]  
Ang G.K.I.(2002)Toward a dynamic simulation model for strategic decision-making in life-cycle project management Project Management Journal 33 23-38
[5]  
Fredriksson G.(1999)Optimizing resource utilization for repetitive construction projects Journal of Construction Engineering and Management 127 18-27
[6]  
Chritamara S.(2000)Green building, organizational success and occupant productivity Building Research & Information 28 351-367
[7]  
Ogunlana S.O.(1997)Sustainable construction: principles and a framework for attainment Journal of Construction Management and Economics 15 223-239
[8]  
Bach N.L.(2002)Using systems dynamics to better understand change and rework in construction project management systems International Journal of Project Management 20 425-436
[9]  
Dolol H.K.(1999)Dynamic planning and control methodology for design/build fast-track construction projects Journal of Construction Engineering and Management 127 1-17
[10]  
Jaafarl A.(2001)On-site sorting of construction and demolition waste in Hong Kong Resources, Conservation and Recycling 32 157-172