Life Cycle Cost Analysis Models for Bridge Structures using Artificial Intelligence Technologies

인공지능기술을 이용한 교량구조물의 생애주기비용분석 모델

  • 안영기 (쌍용엔지니어링주식회사) ;
  • 임정순 (경기대학교 토목.환경공학부) ;
  • 이증빈 (한국건설품질연구원 LCC연구소)
  • Received : 2002.08.22
  • Published : 2002.10.31

Abstract

This study is intended to propose a systematic procedure for the development of the conditional assessment based on the safety of structures and the cost effective performance criteria for designing and upgrading of bridge structures. As a result, a set of cost function models for a life cycle cost analysis of bridge structures is proposed and thus the expected total life cycle costs (ETLCC) including initial (design, testing and construction) costs and direct/indirect damage costs considering repair and replacement costs, human losses and property damage costs, road user costs, and indirect regional economic losses costs. Also, the optimum safety indices are presented based on the expected total cost minimization function using only three parameters of the failure cost to the initial cost (${\tau}$), the extent of increased initial cost by improvement of safety (${\nu}$) and the order of an initial cost function (n). Through the enough numerical invetigations, we can positively conclude that the proposed optimum design procedure for bridge structures based on the ETLCC will lead to more rational, economical and safer design.

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