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Amirtash, P, Majid Parchami, J and Jelodar, M B (2021) Integration of project management services for International Engineering, Procurement and Construction projects. Built Environment Project and Asset Management, 11(2), 330-49.

Bhattacharya, S, Momaya, K S and Iyer, K C (2021) Bridging the gaps for business growth among Indian construction companies. Built Environment Project and Asset Management, 11(2), 231-50.

Cevikcan, E and Kose, Y (2021) Optimization of profitability and liquidity for residential projects under debt and equity financing. Built Environment Project and Asset Management, 11(2), 369-91.

Isuri Anuradha, A, Soorige, D and Geekiyanage, D (2021) Comparative study on life cycle assessment of buildings in developed countries and Sri Lanka. Built Environment Project and Asset Management, 11(2), 304-29.

Moyo, T, Crafford, G and Emuze, F (2021) People-centred management for improving construction workers' productivity in Zimbabwe. Built Environment Project and Asset Management, 11(2), 350-68.

Ottou, J A, Baiden, B K, Nani, G and Martin Morgan, T (2021) Benefits of implementing Six Sigma in competitive tendering process. Built Environment Project and Asset Management, 11(2), 214-30.

Safapour, E, Kermanshachi, S and Kamalirad, S (2021) Analysis of effective project-based communication components within primary stakeholders in construction industry. Built Environment Project and Asset Management, 11(2), 157-73.

Sekar, G, Sambasivan, M and Viswanathan, K (2021) Does size of construction firms matter? Impact of project-factors and organization-factors on project performance. Built Environment Project and Asset Management, 11(2), 174-94.

Sun, J, Balakrishnan, S and Zhang, Z (2021) A resource allocation framework for predisaster resilience management of interdependent infrastructure networks. Built Environment Project and Asset Management, 11(2), 284-303.

  • Type: Journal Article
  • Keywords: infrastructure resilience; agent-based modelling; simulation-based optimization; critical infrastructure; case studies; infrastructure; impact analysis; disasters; absorptive capacity; power plants
  • ISBN/ISSN:
  • URL: http://dx.doi.org/10.1108/BEPAM-06-2020-0109
  • Abstract:
    Resource allocation is essential to infrastructure management. The purpose of this study is to develop a methodological framework for resource allocation that takes interdependencies among infrastructure systems into consideration to minimize the overall impact of infrastructure network disruptions due to extreme events. Taking advantage of agent-based modeling techniques, the proposed methodology estimates the interdependent effects of a given infrastructure failure which are then used to optimize resource allocation such that the network-level resilience is maximized. The findings of the study show that allocating resources with the proposed methodology, where optimal infrastructure reinforcement interventions are implemented, can improve the resilience of infrastructure networks with respect to both direct and interdependent risks of extreme events. These findings are also verified by the results of two case studies. As the two case studies have shown, the proposed methodological framework can be applied to the resource allocation process in asset management practices.Social implicationsThe proposed methodology improves the resilience of the infrastructure network, which can alleviate the social and economic impact of extreme events on communities. Capitalizing on the combination of agent-based modeling and simulation-based optimization techniques, this study fulfills a critical gap in infrastructure asset management by incorporating infrastructure interdependence and resilience concepts into the resource allocation process.

Tuffaha, F M, Assaf, S, Yasar Zakaria, Z and Hadidi, L A (2021) A framework for the performance assessment of construction contractors in Saudi Arabia. Built Environment Project and Asset Management, 11(2), 195-213.

Verma, S, Mandal, S N, Robinson, S, Bajaj, D and Saxena, A (2021) Investment appraisal and financial benefits of corporate green buildings: a developing economy case study. Built Environment Project and Asset Management, 11(2), 392-408.

Zarghami, S A and Gunawan, I (2021) The emergence and evolution of reliability theory for water distribution networks. Built Environment Project and Asset Management, 11(2), 251-65.