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Abu El-Maaty, A E, El-Kholy, A M and Akal, A Y (2017) Modeling schedule overrun and cost escalation percentages of highway projects using fuzzy approach. Engineering, Construction and Architectural Management, 24(05), 809-27.

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Chang, R-D, Zuo, J, Soebarto, V, Zhao, Z-Y and Zillante, G (2017) Dynamic interactions between sustainability and competitiveness in construction firms: A transition perspective. Engineering, Construction and Architectural Management, 24(05), 842-59.

Cheah, C Y J and Liu, J (2006) Valuing governmental support in infrastructure projects as real options using Monte Carlo simulation. Construction Management and Economics, 24(05), 545-54.

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Denny-Smith, G and Loosemore, M (2017) Integrating indigenous enterprises into the Australian construction industry. Engineering, Construction and Architectural Management, 24(05), 788-808.

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Kale, S and Arditi, D (2006) Diffusion of ISO 9000 certification in the precast concrete industry. Construction Management and Economics, 24(05), 485-95.

Kaming, P F, Olomolaiye, P O, Holt, G D, Kometa, S T and Harris, F C (1996) Project managers' perception of production problems - an Indonesian case study. Building Research & Information, 24(05), 302–10.

Liu, A M M and Fang, Z (2006) A power-based leadership approach to project management. Construction Management and Economics, 24(05), 497-507.

Moore, D (1996) The Renaissance: the beginning of the end for implicit buildability. Building Research & Information, 24(05), 259–69.

Murphy, M E and Nahod, M-M (2017) Stakeholder competency in evaluating the environmental impacts of infrastructure projects using BIM. Engineering, Construction and Architectural Management, 24(05), 718-35.

Ramsaran, R and Hosein, R (2006) Growth, employment and the construction industry in Trinidad and Tobago. Construction Management and Economics, 24(05), 465-74.

Sinesilassie, E G, Tabish, S Z S and Jha, K N (2017) Critical factors affecting schedule performance: A case of Ethiopian public construction projects: engineers’ perspective. Engineering, Construction and Architectural Management, 24(05), 757-73.

Styhre, A and Josephson, P-E (2006) Revisiting site manager work: stuck in the middle?. Construction Management and Economics, 24(05), 521-8.

Tran, D Q, Molenaar, K R and Kolli, B (2017) Implementation of best-value procurement for highway design and construction in the USA. Engineering, Construction and Architectural Management, 24(05), 774-87.

Wang, D, Hadavi, A and Krizek, R J (2006) Chinese construction firms in reform. Construction Management and Economics, 24(05), 509-19.

Yiu, C Y and Tam, C S (2006) Rational under-pricing in bidding strategy: a real options model. Construction Management and Economics, 24(05), 475-84.

Zhang, G and Yang, J (2006) Factors influencing the implementation of the raised floor system in Australian office buildings. Construction Management and Economics, 24(05), 529-43.

  • Type: Journal Article
  • Keywords: Australia; constructability; fitout; office building; raised floor system
  • ISBN/ISSN: 0144-6193
  • URL: https://doi.org/10.1080/01446190600568025
  • Abstract:

    Raised floor systems (RFS) were initially developed for computer room applications. As an alternative for general office space fitout, they have not been widely accepted, particularly in Australia. Despite the potential exhibited, such as improved ventilation and air quality when used with underfloor sub-systems, and the flexibility for office space reconfiguration, RFS implementation had encountered problems, ranging from the excessive costs perceived by owners and developers, to the lack of technical expertise among builders and contractors on the installation of RFS and specialized components. In the research work reported in this article, these problems were identified together with the highlighting of 44 Significant Influence Factors (SIFs). This was achieved through RFS product study, questionnaire survey, interviews and site observations. These SIFs and problems were then amplified in the research by industry focus groups and life cycle cost comparison between RFS and ceiling based fitout methods. The resulting 36 Project Level Critical Factors (PLCFs) pertaining to fitout design, construction, operation and maintenance were then considered in a constructability study, which established an integrated constructability framework for RFS fitout implementation, the most appropriate contracting strategy, and a process-based model for RFS product selection under local conditions. A set of guidelines that recommend main activities and subsidiary tasks through five stages of RFS project implementation was also presented. These findings will contribute to improved awareness, adoption rate and implementation efficiency of RFS fitout in the Australian office building industry.