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The Development of Object-oriented Building Life Cycle $CO_2$ Assessment System(LOCAS)

목적지향형 건축물 전과정 $CO_2$ 평가 프로그램(LOCAS) 개발

  • Received : 2011.10.06
  • Published : 2012.01.25

Abstract

This study purports to construct a system that assesses the life cycle $CO_2$ emissions of a building according to the progress of the construction project and to thus develop a object-oriented building life cycle $CO_2$ assessment program that can execute a comprehensive evaluation of the $CO_2$ emissions resulting from construction activities. To achieve this, this study first investigated the standards of the ISO 14040 Series and trends in domestic and international studies on the life cycle $CO_2$ emission assessment program for a building after analyzing the study trends and necessary elements; then, items and methods of building life cycle assessment that are suitable to the conditions in Korea were chosen. The composition of the building life cycle $CO_2$ assessment program was subdivided into 4 systems : a simplified assessment system, a detailed assessment system, a site assessment system, and an assessment analysis system, according to the object of the building life cycle $CO_2$ assessment and by reviewing the range and timing of the building life cycle assessment by construction project phase. A database that can be applied efficiently to this study was constructed following an analysis of the computation technique for the $CO_2$ basic unit of each construction material and energy source as well as the characteristics of the construction materials depending on the usage, structure, and form of the building. As a result, the computation model and assessment technique for elements to be assessed for the simplified assessment system, the detailed system, the site assessment system, and the building life cycle $CO_2$ assessment system by construction project phase were obtained, and the object-oriented building life cycle $CO_2$ assessment program (LOCAS) was developed by integrating these systems.

Keywords

Acknowledgement

Supported by : 한국연구재단, 한양대학교 친환경건축 연구센터, 롯데건설

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