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Adesi, M, Owusu-Manu, D and Murphy, R (2018) Strategic competences for pricing quantity surveying consultancy services. Engineering, Construction and Architectural Management, 25(03), 458–74.

Deng, X, Low, S P, Zhao, X and Chang, T (2018) Identifying micro variables contributing to political risks in international construction projects. Engineering, Construction and Architectural Management, 25(03), 317–34.

Hassim, S, Muniandy, R, Alias, A H and Abdullah, P (2018) Construction tender price estimation standardization (TPES) in Malaysia. Engineering, Construction and Architectural Management, 25(03), 443–57.

Holt, G D (2018) Let’s change tack, not wind direction: a response to Kog and Yaman (2016). Engineering, Construction and Architectural Management, 25(03), 335–41.

Pellegrino, R and Costantino, N (2018) An empirical investigation of the learning effect in concrete operations. Engineering, Construction and Architectural Management, 25(03), 342–57.

Shurrab, M, Abbasi, G and Al Khazaleh, R (2018) Evaluating the effect of motivational dimensions on the construction project managers in Jordan. Engineering, Construction and Architectural Management, 25(03), 412–24.

Sundquist, V, Hulthén, K and Gadde, L E (2018) From project partnering towards strategic supplier partnering. Engineering, Construction and Architectural Management, 25(03), 358–73.

Wang, Q, Guo, Z, Mei, T, Li, Q and Li, P (2018) Labor crew workspace analysis for prefabricated assemblies’ installation. Engineering, Construction and Architectural Management, 25(03), 374–411.

  • Type: Journal Article
  • Keywords: Construction; Project management; Building information modelling; Approach;
  • ISBN/ISSN: 0969-9988
  • URL: https://doi.org/10.1108/ECAM-09-2016-0210
  • Abstract:
    Construction industrialization is emerging in the construction industry, as a result, buildings with prefabricated assemblies are gaining more and more ground. In most situations, the prefabricated building assemblies are installed by labor crews manually. If some assemblies are ill-designed, clashes between labor crews’ workspaces and them may occur, which will have bad effect on workers’ productivity and even incur hazard. The purpose of this paper is to provide a 4D building information modeling (BIM) based approach to find potential workspace conflicts during the installation process of prefabricated building assemblies in the detailed design process so as to eliminate them in advance. Design/methodology/approach First, a workspace modeling method is provided; second, three kinds of workspace conflicts are analyzed; third, a 4D-BIM-based approach is established; fourth, a prototype tool based on the approach is developed; and finally, a case study is conducted to test the tool. Findings The result shows that the proposed tool can detect or precaution workspace conflicts and visualize them in a series of views; in doing so, valuable information can be obtained for improving the design quality of prefabricated assemblies. Research limitations/implications The proposed approach and tool only concern the congestions caused by ill-designed prefabricated components; the tool needed to be further optimized for speed; the tests on the tool are limited to a single case study; and more tests are needed to verify its effectiveness. Originality/value This research provides a 4D-BIM-based approach and a prototype tool for installation workspace analysis. It can be used to provide support for design optimization of prefabricated building assemblies.

Zhang, R P, Pirzadeh, P, Lingard, H and Nevin, S (2018) Safety climate as a relative concept. Engineering, Construction and Architectural Management, 25(03), 298–316.

Zuo, J, Zhao, X, Nguyen, Q B M, Ma, T and Gao, S (2018) Soft skills of construction project management professionals and project success factors. Engineering, Construction and Architectural Management, 25(03), 425–42.