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Ahuja, R, Sawhney, A and Arif, M (2018) Developing organizational capabilities to deliver lean and green project outcomes using BIM. Engineering, Construction and Architectural Management, 25(10), 1255–76.

Ayinla, K O and Adamu, Z (2018) Bridging the digital divide gap in BIM technology adoption. Engineering, Construction and Architectural Management, 25(10), 1398–416.

Brady, D A, Tzortzopoulos, P, Rooke, J, Formoso, C T and Tezel, A (2018) Improving transparency in construction management: a visual planning and control model. Engineering, Construction and Architectural Management, 25(10), 1277–97.

Bygballe, L E, Endresen, M and Fålun, S (2018) The role of formal and informal mechanisms in implementing lean principles in construction projects. Engineering, Construction and Architectural Management, 25(10), 1322–38.

Jin, R, Yang, T, Piroozfar, P, Kang, B, Wanatowski, D, Hancock, C M and Tang, L (2018) Project-based pedagogy in interdisciplinary building design adopting BIM. Engineering, Construction and Architectural Management, 25(10), 1376–97.

Koseoglu, O and Nurtan-Gunes, E T (2018) Mobile BIM implementation and lean interaction on construction site. Engineering, Construction and Architectural Management, 25(10), 1298–321.

  • Type: Journal Article
  • Keywords: Technology; Case study; Project management; Building information modelling; Information and communication technology (ICT) applications; Construction site;
  • ISBN/ISSN: 0969-9988
  • URL: https://doi.org/10.1108/ECAM-08-2017-0188
  • Abstract:
    Building information modeling (BIM) and lean construction are two practices that are developed in order to increase productivity, efficiency and quality in construction by implementing various procedures. However, the practical execution of both BIM and lean is mostly limited with the tasks performed in the office environments in the design phase. The purpose of this paper is to examine the benefit realizations in terms of lean interactions resulting from mobile BIM processes through a framework by focusing on digital transformations performed on the construction site. Design/methodology/approach This paper examines the benefit realizations in terms of lean interactions resulting from mobile BIM processes through a framework by focusing on digital transformations performed on the construction site. To describe the case, BIM project management processes during construction phase have been explained by a participatory research. With a comprehensive literature review, interactions between site BIM processes and lean principles have been defined and the case has been evaluated accordingly. Findings By focusing on the mobile BIM delivery of project information via tablets to construction site, it has been identified that through the use of technology enabled by BIM practices, lean construction principles are also simultaneously accomplished. This achievement is not only realized with technology but also with the strategic implementation and transformation of organization with the proper BIM practices. Research limitations/implications The research is focused on mobile BIM processes applied on-site to enhance traditional project management processes. With the findings of this paper, practitioners may identify research questions to resolve real-life implementation challenges. Practical implications This research will enlighten construction practitioners regarding site BIM application capabilities and lean achievements with the utilization of improved project management processes enabled by BIM. Originality/value Through the implementation of project management processes enabled by BIM practices on construction site, lean principles are achieved and bottlenecks are identified.

Koseoglu, O, Sakin, M and Arayici, Y (2018) Exploring the BIM and lean synergies in the Istanbul Grand Airport construction project. Engineering, Construction and Architectural Management, 25(10), 1339–54.

Othman, A A E and Khalil, M H M (2018) Lean talent management: a novel approach for increasing creativity in architectural design firms. Engineering, Construction and Architectural Management, 25(10), 1355–75.