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Aaron, M A, Mohan, M K and Gangadhar, M (2011) Building relationally integrated value networks (RIVANS). Engineering, Construction and Architectural Management, 18(01), 102–20.

Abdirad, H and Dossick, C S (2019) Restructuration of architectural practice in integrated project delivery (IPD): two case studies. Engineering, Construction and Architectural Management, 26(01), 104–17.

Abdul-Aziz, A-R and Tan, A C N (1998) GATT, GATS and the global construction industry. Engineering, Construction and Architectural Management, 5(01), 31–7.

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Akintoye, A, Taylor, C and Fitzgerald, E (1998) Risk analysis and management of Private Finance Initiative projects. Engineering, Construction and Architectural Management, 5(01), 9–21.

Alarcón, L F and Bastias, A (2000) A computer environment to support the strategic decision-making process in construction firms. Engineering, Construction and Architectural Management, 7(01), 63–75.

Alavipour, S R and Arditi, D (2019) Maximizing expected contractor profit using an integrated model. Engineering, Construction and Architectural Management, 26(01), 118–38.

Alazzaz, F and Whyte, A (2015) Linking employee empowerment with productivity in off-site construction. Engineering, Construction and Architectural Management, 22(01), 21-37.

AlSehaimi, A O, Fazenda, P T and Koskela, L (2014) Improving construction management practice with the Last Planner System: a case study. Engineering, Construction and Architectural Management, 21(01), 51-64.

Alves Tenório de Morais, G and Casado Lordsleem Júnior, A (2019) Building maintenance management activities in a public institution. Engineering, Construction and Architectural Management, 26(01), 85–103.

Andersen, T and Gaarslev, T (1996) Perspectives on artificial intelligence in the construction industry. Engineering, Construction and Architectural Management, 3(01), 3-14.

Ankrah, N A, Proverbs, D and Debrah, Y (2009) Factors influencing the culture of a construction project organisation: an empirical investigation. Engineering, Construction and Architectural Management, 16(01), 26–47.

Ansah, R H and Sorooshian, S (2018) 4P delays in project management. Engineering, Construction and Architectural Management, 25(01), 62-76.

Anumba, C J, Pan, J, Issa, R R A and Mutis, I (2008) Collaborative project information management in a semantic web environment. Engineering, Construction and Architectural Management, 15(01), 78–94.

  • Type: Journal Article
  • Keywords: Construction industry; design and development; Information management; project management; semantics; worldwide web
  • ISBN/ISSN: 0969-9988
  • URL: http://www.emeraldinsight.com/10.1108/09699980810842089
  • Abstract:
    Purpose – The advent of web services and the semantic web have opened up opportunities for a new generation of interoperable systems on the web. The purpose of this paper is to show the importance of semantics in design and construction, and how this has long been recognised and addressed to varying extents by researchers. Design/methodology/approach – There is now the potential for designs to be developed through a system of collaborating design services and for input by the construction team members. The potential also extends to the construction phase where the designers can provide more timely responses to problems encountered in the field. Within this environment, there is the need for effective mechanisms for design and construction information management, in addition to an ontology that facilitates the sharing of design and construction information and the underlying semantics. This paper explores these trends in collaborative design and construction, and presents an ontology-based approach to project information management in a semantic web environment. Findings – The findings include a framework for semantic web-based information management (SWIMS), which provides for effective collaborative information management. Examples, based on design and construction information, are presented to illustrate the key concepts. Originality/value – This paper presents an innovative approach to overcoming the limitations of conventional information management approaches in construction. The proposed approach is expected to enhance collaboration, and avoid information loss, overload and misunderstanding,

Arif, M, Al Zubi, M, Gupta, A D, Egbu, C, Walton, R O and Islam, R (2017) Knowledge sharing maturity model for Jordanian construction sector. Engineering, Construction and Architectural Management, 24(01), 170-88.

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Bangwal, D and Tiwari, P (2019) Environmental design and awareness impact on organization image. Engineering, Construction and Architectural Management, 26(01), 29–45.

Bassioni, H A, Hassan, T M and Price, A D F (2008) Evaluation and analysis of criteria and sub-criteria of a construction excellence model. Engineering, Construction and Architectural Management, 15(01), 21–41.

Bibby, L, Austin, S and Bouchlaghem, D (2006) The impact of a design management training initiative on project performance. Engineering, Construction and Architectural Management, 13(01), 7–26.

Blismas, N, Wakefield, R and Hauser, B (2010) Concrete prefabricated housing via advances in systems technologies: Development of a technology roadmap. Engineering, Construction and Architectural Management, 17(01), 110.

Blyth, K and Kaka, A (2006) A novel multiple linear regression model for forecasting S-curves. Engineering, Construction and Architectural Management, 13(01), 82–95.

Bowen, P, Govender, R, Edwards, P and Cattell, K (2016) An explanatory model of attitudinal fear of HIV/AIDS testing in the construction industry. Engineering, Construction and Architectural Management, 23(01), 92-112.

Bowles, G and Morgan, J (2016) An evaluation of the performance of a large-scale collaborative procurement initiative in the social housing sector. Engineering, Construction and Architectural Management, 23(01), 60-74.

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