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A Quantity Prediction Model for Reinforced Concrete and Bricks in Education Facilities Using Regression Analysis

  • Lee, Jong-Kyun (Department of Architectural Plant, Youngsan University) ;
  • Kim, Boo-Young (School of Architecture, University of Ulsan) ;
  • Kim, Jang-Young (Department of Education Facility, Anyanggwacheon Office of Education) ;
  • Kim, Tae-Hui (Department of Architectural Engineering, Mokpo National University) ;
  • Son, Kiyoung (School of Architecture, University of Ulsan)
  • Received : 2013.07.02
  • Accepted : 2013.09.03
  • Published : 2013.10.20

Abstract

Since the amendment of the law on the private sector investment in social infrastructure in January of 2005, the government has been actively promoting Build-Transfer-Lease (BTL) projects. Notably, most new educational facilities have been built as BTL projects. For these facilities, the unit cost per unit area has been applied to predict construction costs. However, since construction costs are mostly managed after the detailed design phase, the costs can be estimated incorrectly. For this reason, cost management is needed in the planning phase, with a sound approximate estimate to prevent the wasteful use of funds. To address this shortcoming, this study aims to develop a quantity prediction model for education facilities using regression analysis in the planning phase. The developed model is focused on the required quantities of reinforced concrete and bricks. In order to achieve the objective, the data of 44 educational facility projects collected from Gyeonggi-do was used in the regression model. This study can be utilized by major stakeholders to accurately predict construction costs by estimating the appropriate quantities of reinforced concrete and bricks in the planning design phase.

Keywords

References

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