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Ahn, C R and Lee, S (2013) Importance of Operational Efficiency to Achieve Energy Efficiency and Exhaust Emission Reduction of Construction Operations. Journal of Construction Engineering and Management, 139(04), 404–13.

Bowen, P, Edwards, P and Lingard, H (2013) Workplace Stress Experienced by Construction Professionals in South Africa. Journal of Construction Engineering and Management, 139(04), 393–403.

Fernandez-Solis, J L, Porwal, V, Lavy, S, Shafaat, A, Rybkowski, Z K, Son, K and Lagoo, N (2013) Survey of Motivations, Benefits, and Implementation Challenges of Last Planner System Users. Journal of Construction Engineering and Management, 139(04), 354–60.

Forcada, N, Macarulla, M and Love, P E D (2013) Assessment of Residential Defects at Post-Handover. Journal of Construction Engineering and Management, 139(04), 372–8.

Kang, Y, O’Brien, W J, Dai, J, Mulva, S P, Thomas, S P, Chapman, R E and Butry, D (2013) Interaction Effects of Information Technologies and Best Practices on Construction Project Performance. Journal of Construction Engineering and Management, 139(04), 361–71.

Lorterapong, P and Ussavadilokrit, M (2013) Construction Scheduling Using the Constraint Satisfaction Problem Method. Journal of Construction Engineering and Management, 139(04), 414–22.

Solis, F, Sinfield, J V and Abraham, D M (2013) Hybrid Approach to the Study of Inter-Organization High Performance Teams. Journal of Construction Engineering and Management, 139(04), 379–92.

Son, H and Kim, C (2013) Multiimaging Sensor Data Fusion-Based Enhancement for 3D Workspace Representation for Remote Machine Operation. Journal of Construction Engineering and Management, 139(04), 434–44.

Turkan, Y, Bosché, F, Haas, C T and Haas, R (2013) Toward Automated Earned Value Tracking Using 3D Imaging Tools. Journal of Construction Engineering and Management, 139(04), 423–33.

Vaughan, J L, Leming, M L, Liu, M and Jaselskis, E (2013) Cost-Benefit Analysis of Construction Information Management System Implementation: Case Study. Journal of Construction Engineering and Management, 139(04), 445–55.

  • Type: Journal Article
  • Keywords: Technology; Information management; Construction management; Computer software; Planning; Case studies; Benefit cost ratios; Technology; Construction; Software; Management; Planning;
  • ISBN/ISSN: 0733-9364
  • URL: https://doi.org/10.1061/(ASCE)CO.1943-7862.0000611
  • Abstract:
    In construction projects, construction managers spend a significant portion of their time gathering project data, assessing production rates, communicating with project participants, and tracking project quality. Executing those tasks manually reduces efficiency and can result in less effective project management operations. In order to improve efficiency of information process flow, various types of construction information management systems (CIMSs) have been introduced to construction projects. However, due to the difficulty of tracking fragmental and illusive data, measuring the cost and benefit of the implementation and evaluating the trade-off remain a challenge for construction practitioners. This paper’s contributions to the body of knowledge include (1) proposing a framework to assess tangible and semitangible or intangible costs and benefits of innovative construction technology application, (2) determining costs and benefits of the use of CIMSs by conducting a product-specific case study, and (3) summarizing lessons learned through the application of a CIMS from the first-hand users so that construction managers can avoid pitfalls in other projects. This study provides data collected during real-time immersion in the project as part of the project team over a 6 month period. The study found that the use of CIMSs, coupled with mobile technologies, increased efficiency and decreased clerical time of operations-level construction personnel, and thereby increased value to the project through improved allocation of managerial time. The internal observation and analysis provide a useful guidance to project managers who are interested in implementing CIMS in construction projects.