Socio-ecological risks management dynamic simulation in megaproject development of the Edinburgh Tram Network

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY International Journal of Building Pathology and Adaptation Pub Date : 2022-08-30 DOI:10.1108/ijbpa-05-2022-0076
P. Boateng, T. Omotayo, T. Osunsanmi, Damilola Ekundayo
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Abstract

PurposeThe inherent risks and their interactive impacts in megaproject development have been found in numerous cases worldwide. Although risk management standards have been recommended for the best practice in engineering construction projects, there is still a lack of systematic approaches to describing the interactions. Interactions such as social, technical, economic, ecological and political (STEEP) risks have complex and dynamic implications for megaproject construction. For a better understanding and effective management of megaprojects such as the Edinburgh Tram project, the dynamic interaction of concomitant risks must be studied.Design/methodology/approachA systems dynamic methodology was adopted following the comprehensive literature review. Documentary data were gathered from the case study on Tram Network Project in Edinburgh.FindingsA casual loop of typical evolution of key indicators of risks was then developed. A hypothesised model of social and ecological (SE) risks was derived using the system dynamics (SD) modelling technique. The model was set up following British Standards on risk management to provide a generic tool for risk management in megaproject development. The study reveals that cost and time overruns at the developmental stage of the case project are caused mainly by the effects of interactions of risk factors from the external macro project environment on a timely basis.Originality/valueThis article presented a model for simulating the socio-ecological risk confronting the management and construction of megaprojects. The use of SD provided the opportunity to explain the nature of all risks, particularly the SE risks in the past stages of project development.
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爱丁堡电车网络大型项目开发中的社会生态风险管理动态模拟
目的在世界范围内的许多案例中都发现了大型项目开发中的固有风险及其相互影响。尽管风险管理标准已被推荐为工程建设项目的最佳实践,但仍然缺乏描述相互作用的系统方法。社会、技术、经济、生态和政治风险等相互作用对大型项目建设具有复杂而动态的影响。为了更好地理解和有效管理爱丁堡有轨电车项目等大型项目,必须研究伴随风险的动态相互作用。设计/方法论/方法在综合文献综述后采用了系统动态方法论。从Edinburgh有轨电车网络项目的案例研究中收集了文献数据。随后,开发了关键风险指标典型演变的随机循环。使用系统动力学(SD)建模技术推导了社会和生态(SE)风险的假设模型。该模型是根据英国风险管理标准建立的,旨在为大型项目开发中的风险管理提供通用工具。研究表明,案例项目开发阶段的成本和时间超支主要是由外部宏观项目环境的风险因素及时相互作用造成的。原创性/价值本文提出了一个模拟大型项目管理和建设所面临的社会生态风险的模型。SD的使用提供了解释所有风险性质的机会,特别是项目开发过去阶段的SE风险。
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来源期刊
CiteScore
4.80
自引率
18.20%
发文量
76
期刊介绍: The International Journal of Building Pathology and Adaptation publishes findings on contemporary and original research towards sustaining, maintaining and managing existing buildings. The journal provides an interdisciplinary approach to the study of buildings, their performance and adaptation in order to develop appropriate technical and management solutions. This requires an holistic understanding of the complex interactions between the materials, components, occupants, design and environment, demanding the application and development of methodologies for diagnosis, prognosis and treatment in this multidisciplinary area. With rapid technological developments, a changing climate and more extreme weather, coupled with developing societal demands, the challenges to the professions responsible are complex and varied; solutions need to be rigorously researched and tested to navigate the dynamic context in which today''s buildings are to be sustained. Within this context, the scope and coverage of the journal incorporates the following indicative topics: • Behavioural and human responses • Building defects and prognosis • Building adaptation and retrofit • Building conservation and restoration • Building Information Modelling (BIM) • Building and planning regulations and legislation • Building technology • Conflict avoidance, management and disputes resolution • Digital information and communication technologies • Education and training • Environmental performance • Energy management • Health, safety and welfare issues • Healthy enclosures • Innovations and innovative technologies • Law and practice of dilapidation • Maintenance and refurbishment • Materials testing • Policy formulation and development • Project management • Resilience • Structural considerations • Surveying methodologies and techniques • Sustainability and climate change • Valuation and financial investment
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