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Choi, K, Lee, H W, Bae, J and Bilbo, D (2016) Time-Cost Performance Effect of Change Orders from Accelerated Contract Provisions. Journal of Construction Engineering and Management, 142(03).

Farnsworth, C B, Warr, R O, Weidman, J E and Mark Hutchings, D (2016) Effects of CM/GC Project Delivery on Managing Process Risk in Transportation Construction. Journal of Construction Engineering and Management, 142(03).

Klanšek, U (2016) Mixed-Integer Nonlinear Programming Model for Nonlinear Discrete Optimization of Project Schedules under Restricted Costs. Journal of Construction Engineering and Management, 142(03).

Lee, K, Han, S H, Park, H and David Jeong, H (2016) Empirical Analysis of Host-Country Effects in the International Construction Market: An Industry-Level Approach. Journal of Construction Engineering and Management, 142(03).

Lee, S and Yu, J (2016) Comparative Study of BIM Acceptance between Korea and the United States. Journal of Construction Engineering and Management, 142(03).

Li, T H Y, Thomas Ng, S and Skitmore, M (2016) Modeling Multi-Stakeholder Multi-Objective Decisions during Public Participation in Major Infrastructure and Construction Projects: A Decision Rule Approach. Journal of Construction Engineering and Management, 142(03).

Moon, S, Choi, E and Hong, S (2016) Creation of Robust Design Alternatives for Temporary Construction in Value Engineering. Journal of Construction Engineering and Management, 142(03).

  • Type: Journal Article
  • Keywords: Temporary structure; Value engineering; Theory of inventive problem solving (TRIZ); Robust design; Design alternative; Design parameter; External factor; Signal to noise ratio; Matrix evaluation; Value improvement; Project planning and design;
  • ISBN/ISSN: 0733-9364
  • URL: https://doi.org/10.1061/(ASCE)CO.1943-7862.0001057
  • Abstract:
    A temporary structure serves mainly to protect permanent building structures from the natural environment during the construction operation. When exposed to the natural environment, a temporary structure should effectively resist the variations in external factors that exist at construction sites. The objective of this paper is to provide a methodology for creating robust design alternatives for temporary construction in value engineering (VE). A combined effort is presented by integrating the problem-solving principles of theory of inventive problem solving (TRIZ) in conjunction with robust design. In this approach, the design parameters are planned to minimize the impact of external factors on the intended design functions of temporary structures; consequently, a new alternative is selected to be more robust to withstand the surrounding site conditions. A case study conducted on a retaining wall and its related temporary structures demonstrated that the creation of robust design alternatives can be achieved by integrating the problem-solving principles with the external factors in robust design.

Pawan, P and Lorterapong, P (2016) A Fuzzy-Based Integrated Framework for Assessing Time Contingency in Construction Projects. Journal of Construction Engineering and Management, 142(03).

Sonmez, R, Iranagh, M A and Uysal, F (2016) Critical Sequence Crashing Heuristic for Resource-Constrained Discrete Time–Cost Trade-Off Problem. Journal of Construction Engineering and Management, 142(03).

Zhang, L and El-Gohary, N M (2016) Epistemology-Based Context-Aware Semantic Model for Sustainable Construction Practices. Journal of Construction Engineering and Management, 142(03).

Zhang, L, Cheng, J and Fan, W (2016) Party Selection for Integrated Project Delivery Based on Interorganizational Transactive Memory System. Journal of Construction Engineering and Management, 142(03).