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Ahmad, H S, Ayoush, M D and Al-Alwan, M S (2019) Causes of delay to public infrastructure projects according to engineers representing different contract parties. Built Environment Project and Asset Management, 10(01), 153–79.

Aibinu, A A, Carter, S, Francis, V and Vaz-Serra, P (2019) Request for information frequency and their turnaround time in construction projects. Built Environment Project and Asset Management, 10(01), 1–15.

Ershadi, M J, Edrisabadi, R and Shakouri, A (2019) Strategic alignment of project management with health, safety and environmental management. Built Environment Project and Asset Management, 10(01), 78–93.

Eyiah-Botwe, E, Aigbavboa, C O and Thwala, W D (2019) Curbing PPP construction projects’ failure using enhanced stakeholder management success in developing countries. Built Environment Project and Asset Management, 10(01), 50–63.

Jalali, A, Hidzir, N I, Jaafar, M and Dahalan, N (2019) Factors that trigger bullying amongst subcontractors toward intention to quit in the construction projects. Built Environment Project and Asset Management, 10(01), 140–52.

Liu, S, Jin, H, Liu, C, Xie, B and Mills, A (2019) Investment apportionments among participants of PPP rental retirement villages. Built Environment Project and Asset Management, 10(01), 64–77.

Owolabi, H, Oyedele, L, Alaka, H, Ajayi, S, Bilal, M and Akinade, O (2019) Risk mitigation in PFI/PPP project finance. Built Environment Project and Asset Management, 10(01), 28–49.

Rethnam, O R, Palaniappan, S and Ashokkumar, V (2019) Life cycle cost analysis of 1MW power generation using roof-top solar PV panels. Built Environment Project and Asset Management, 10(01), 124–39.

Sayed, A M, Assaf, S, Aldosary, A S, Hassanain, M A and Abdallah, A (2019) Drivers of e-bidding implementation in the Saudi Arabian construction industry. Built Environment Project and Asset Management, 10(01), 16–27.

Tennakoon, G, Waidyasekara, A and Ekanayake, B (2019) Revisiting the role of professionals in designing buildings with low embodied and operational energy. Built Environment Project and Asset Management, 10(01), 110–23.

  • Type: Journal Article
  • Keywords: Energy efficiency; Embodied energy; Roles; Design stage; Construction professionals; Operational energy;
  • ISBN/ISSN: 2044-124X
  • URL: https://doi.org/10.1108/BEPAM-01-2019-0009
  • Abstract:
    Many studies have focused on embodied energy (EE) and operational energy (OE), but a shortage of studies on decision making, which involves several decision makers whose decisions can affect the energy performance of buildings, is evident. From the stages of the project life cycle, the design stage is identified as the ideal stage for integrating energy efficiency into buildings. Therefore, the purpose of this paper is to revisit the role of professionals in designing energy-conscious buildings with low EE and OE. Design/methodology/approach This study administered a qualitative approach. Data were collected through semi-structured interviews only with 12 experts, due to the lack of expertise in the subject matter. The data were analyzed using manual content analysis. Findings The outcomes revealed the necessity to revisit the role of construction professionals in terms of adopting energy-efficient building design concepts from the project outset. The roles of the key professional groups (i.e. architects, structural engineers, services engineers and quantity surveyors) were identified through this research. Common issues in designing energy-efficient buildings and the means of addressing such problems were outlined. Originality/value This study contributes to the knowledge by revisiting the roles of construction professionals and proposing how they could leverage their strengths to play the important role and contribute collectively to design buildings with both low OE and EE.

Ugulu, R A, Arewa, A and Allen, S (2019) Project-specific constraints influencing productivity of tradespeople in the Nigerian construction industry. Built Environment Project and Asset Management, 10(01), 94–109.