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Akmam Syed Zakaria, S, Gajendran, T, Rose, T and Brewer, G (2018) Contextual, structural and behavioural factors influencing the adoption of industrialised building systems: a review. Architectural Engineering and Design Management, 14(01–02), 3–26.

Akmam Syed Zakaria, S, Gajendran, T, Skitmore, M and Brewer, G (2018) Key factors influencing the decision to adopt industrialised building systems technology in the Malaysian construction industry: an inter-project perspective. Architectural Engineering and Design Management, 14(01–02), 27–45.

Al-Bazi, A and Dawood, N (2018) Simulation-based optimisation using simulated annealing for crew allocation in the precast industry. Architectural Engineering and Design Management, 14(01–02), 109–26.

Arashpour, M, Wakefield, R, Abbasi, B, Arashpour, M and Hosseini, R (2018) Optimal process integration architectures in off-site construction: Theorizing the use of multi-skilled resources. Architectural Engineering and Design Management, 14(01–02), 46–59.

Bekdik, B, Pörzgen, J, Bull, S S and Thuesen, C (2018) Modularising design processes of façades in Denmark: re-exploring the use of design structure matrix. Architectural Engineering and Design Management, 14(01–02), 95–108.

Hairstans, R and Smith, R E (2018) Offsite HUB (Scotland): establishing a collaborative regional framework for knowledge exchange in the UK. Architectural Engineering and Design Management, 14(01–02), 60–77.

Montali, J, Overend, M, Pelken, P M and Sauchelli, M (2018) Knowledge-Based Engineering in the design for manufacture of prefabricated façades: current gaps and future trends. Architectural Engineering and Design Management, 14(01–02), 78–94.

Mostafa, S and Chileshe, N (2018) Application of discrete-event simulation to investigate effects of client order behaviour on off-site manufacturing performance in Australia. Architectural Engineering and Design Management, 14(01–02), 139–57.

Ramaji, I J and Memari, A M (2018) Extending the current model view definition standards to support multi-storey modular building projects. Architectural Engineering and Design Management, 14(01–02), 158–76.

Smith, R E, Griffin, G, Rice, T and Hagehofer-Daniell, B (2018) Mass timber: evaluating construction performance. Architectural Engineering and Design Management, 14(01–02), 127–38.

  • Type: Journal Article
  • Keywords: Mass timber; construction performance; lessons learned;
  • ISBN/ISSN: 1745-2007
  • URL: https://doi.org/10.1080/17452007.2016.1273089
  • Abstract:
    This research investigates the added value or negative impact of mass timber construction (MTC) when compared with traditional site built construction. The project documented mass timber case studies and collected cost and schedule data for each built case from three stakeholders – architect, general contractor, and mass timber fabricator. This data were compared with site built cost and schedule performance data provided by cost estimation firm Cummings Corp. for building types of similar size. The study found that mass timber improves project cost when compared with traditional site built construction. In addition to the quantitative comparison, a survey protocol of qualitative opportunities and challenges associated with MTC was solicited from project stakeholders. This resulted in an analysis of frequent lessons learned and best practices for mass timber project delivery for to be taken into consideration by stakeholders.