Modification of advanced programmatic risk analysis and management model for the whole project life cycle’s risks

The advanced programmatic risk analysis and management model (APRAM) is one of the recently developed methods that can be used for risk analysis and management purposes considering schedule, cost, and quality risks simultaneously. However, this model considers those failure risks that occur only over the design and construction phases of a project’s life cycle. While it can be sufficient for some projects for which the required cost during the operating life is much less than the budget required over the construction period, it should be modified in relation to infrastructure projects because the associated costs during the operating life cycle are significant. In this paper, a modified APRAM is proposed, which can consider potential risks that might occur over the entire life cycle of the project, including technical and managerial failure risks. Therefore, the modified model can be used as an efficient decision-support tool for construction managers in the housing industry in which various alternatives might be technically available. The modified method is demonstrated by using a real building project, and this demonstration shows that it can be employed efficiently by construction managers. The Delphi method was applied in order to figure out the failure events and their associated probabilities. The results show that although the initial cost of a cold-formed steel structural system is higher than a conventional construction system, the former’s failure cost is much lower than the latter’s

[1]  Ossama A. Abdou,et al.  Managing Construction Risks , 1996 .

[2]  Frederick S. Hillier,et al.  Introduction of Operations Research , 1967 .

[3]  G. Treloar,et al.  Life-cycle energy analysis of buildings: a case study , 2000 .

[4]  Seth D. Guikema,et al.  Component choice for managing risk in engineered systems with generalized risk/cost functions , 2002, Reliab. Eng. Syst. Saf..

[5]  Seth D. Guikema,et al.  Programmatic Risk Analysis for Critical Engineering Systems Under Tight Resource Constraints , 2003, Oper. Res..

[6]  Robin L. Dillon,et al.  APRAM: an advanced programmatic risk analysis method , 2001 .

[7]  Phillip S. Dunston,et al.  Incorporating Maintainability in Constructability Review Process , 1999 .

[8]  Seth D. Guikema,et al.  Managing construction projects using the advanced programmatic risk analysis and management model , 2009 .

[9]  Hugh Hawk,et al.  Bridge Life-cycle Cost Analysis , 2003 .

[10]  Mohamed El-Reedy Construction Management for Industrial Projects , 2010 .

[11]  Mohamed A. El-Reedy Construction Management for Industrial Projects: A Modular Guide for Project Managers , 2011 .

[12]  Simon Smith,et al.  Tools for selecting appropriate risk management techniques in the built environment , 2008 .

[13]  J.J.Griffin Life cycle cost analysis: a decision aid , 2003 .

[14]  M. Elisabeth Paté-Cornell,et al.  Fault Trees vs. Event Trees in Reliability Analysis , 1984 .

[15]  Keith Dickinson,et al.  Introduction to Operations , 2012 .