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Alsamadani, R, Hallowell, M and Javernick-Will, A N (2013) Measuring and modelling safety communication in small work crews in the US using social network analysis. Construction Management and Economics, 31(06), 568-79.

Ayers, G F, Culvenor, J F, Sillitoe, J and Else, D (2013) Meaningful and effective consultation and the construction industry of Victoria, Australia. Construction Management and Economics, 31(06), 542-67.

Behm, M and Schneller, A (2013) Application of the Loughborough Construction Accident Causation model: a framework for organizational learning. Construction Management and Economics, 31(06), 580-95.

Esmaeili, B and Hallowell, M (2013) Integration of safety risk data with highway construction schedules. Construction Management and Economics, 31(06), 528-41.

Forman, M (2013) Inertia and change: lean construction and health and safety work on construction sites. Construction Management and Economics, 31(06), 647-60.

Koch, C (2013) From crew to country? Local and national construction safety cultures in Denmark. Construction Management and Economics, 31(06), 691-703.

Larsen, G D and Whyte, J (2013) Safe construction through design: perspectives from the site team. Construction Management and Economics, 31(06), 675-90.

  • Type: Journal Article
  • Keywords:
  • ISBN/ISSN: 0144-6193
  • URL: https://doi.org/10.1080/01446193.2013.798424
  • Abstract:
    How does the work of designers impact on the safety of operatives at the construction site? Safety research and policy emphasize the importance of designing for safe construction, yet the interface between design and construction is poorly understood: accidents have multiple causes making it hard to establish causal links between design choices and safety outcomes. An in-depth case study of a major station project examines how professionals on the construction site perceive and manage the safety challenges of a building design. Analyses reveal understandings that, on the project studied, design has an impact on safety because of: (1) the timing of design work, where the volume of late design changes increased the difficulty of planning safe procedures, e.g. for working at height, lifting heavy items, refurbishing and demolishing old buildings; and (2) inputs from design stakeholders with insufficient practical knowledge of construction and operation required unplanned work-arounds, e.g. to coordinate different sub-systems, provide maintenance access, and manage loads during construction. These findings suggest that safety suffers where projects are under-designed, and that alongside regulation, there is a need for robust management attention to the contractual structures, incentives, processes and tools that enable clients and designers to understand material practices of construction and operation.

Li, H, Chan, G and Skitmore, M (2013) Integrating real time positioning systems to improve blind lifting and loading crane operations. Construction Management and Economics, 31(06), 596-605.

Marks, E D and Teizer, J (2013) Method for testing proximity detection and alert technology for safe construction equipment operation. Construction Management and Economics, 31(06), 636-46.

Melzner, J, Zhang, S, Teizer, J and Bargstädt, H-J (2013) A case study on automated safety compliance checking to assist fall protection design and planning in building information models. Construction Management and Economics, 31(06), 661-74.

Sherratt, F, Farrell, P and Noble, R (2013) UK construction site safety: discourses of enforcement and engagement. Construction Management and Economics, 31(06), 623-35.

Tutt, D, Pink, S, Dainty, A R J and Gibb, A (2013) ‘In the air’ and below the horizon: migrant workers in UK construction and the practice-based nature of learning and communicating OHS. Construction Management and Economics, 31(06), 515-27.

Zhou, Z, Irizarry, J and Li, Q (2013) Applying advanced technology to improve safety management in the construction industry: a literature review. Construction Management and Economics, 31(06), 606-22.