Prediction of service life of existing structures by applying probabilistic service life design (SLD) procedures

被引:0
|
作者
Schiessl, P [1 ]
Gehlen, C [1 ]
Pabsch, G [1 ]
机构
[1] Tech Univ Munich, Inst Bldg Mat, Munich, Germany
关键词
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Due to bad experiences corresponding with very costly maintenance and repair measures on existing structures, durability issues of reinforced and pre-stressed concrete structures receive more and more attention from the operator/owner. In order to minimise costly repair or globally spoken to optimise a structure from the economical point of view, considering the planning-, construction- and utilisation-phase, a new service life design concept for reinforced concrete structures has been developed within an European funded Brite-Euram research project DURACRETE [1]. This new concept enables designers to perform a fully probability based service life design (SLD), always related to relevant (exposure dependent) limit state formulations. This method gives the contractor/operator/owner the possibility not only to target the durability of new structures but also to assess the performance of already built structures with regard to durability. If the required reliability can not be achieved by the actual structural lay-out of an already existing structure in consequence further inspection/monitoring and/or intervention (maintenance, repair, strengthening) might be necessary to control/increase the structural reliability. This paper illustrates the effects of different options concerning the thereby increased reliability of the already existing structure.
引用
收藏
页码:593 / 601
页数:9
相关论文
共 50 条
  • [11] Service life prediction of composite structures of aircrafts
    He, Yuting
    Shu, Wenjun
    Fan, Chaohua
    Li, Hongpeng
    Cui, Ronghong
    [J]. ENGINEERING STRUCTURAL INTEGRITY: RESEARCH, DEVELOPMENT AND APPLICATION, VOLS 1 AND 2, 2007, : 939 - 942
  • [12] Probabilistic Approach to Service Life Prediction of Concrete Structures Subjected to Load and Environmental Actions
    Akiyama, Mitsuyoshi
    Frangopol, Dan M.
    Yoshida, Ikumasa
    Tsuruta, Hiroaki
    Shimomura, Takumi
    [J]. MODELLING OF CORRODING CONCRETE STRUCTURES, 2011, 5 : 273 - 281
  • [13] Residual Service Life of Existing Concrete Structures - Is it Useful in Practice?
    Gulikers, Joost J. W.
    Groeneweg, Tom W.
    [J]. HIGH TECH CONCRETE: WHERE TECHNOLOGY AND ENGINEERING MEET, 2018, : 1840 - 1848
  • [14] DuraCrete: Service life design for concrete structures
    Siemes, T
    Edvardsen, C
    [J]. DURABILITY OF BUILDING MATERIALS AND COMPONENTS 8, VOLS 1-4, PROCEEDINGS, 1999, : 1343 - 1356
  • [15] Probabilistic, performance based service life design of concrete structures - Environmental actions and response
    Lindvall, A
    [J]. 2ND INTERNATIONAL RILEM WORKSHOP ON TESTING AND MODELLING THE CHLORIDE INGRESS INTO CONCRETE, 2000, 19 : 277 - 289
  • [16] Reliability-based service life prediction of existing concrete structures under marine environment
    吴灵杰
    周拥军
    寇新建
    蒋萌
    [J]. Journal of Central South University, 2015, 22 (09) : 3608 - 3614
  • [17] Reliability-based service life prediction of existing concrete structures under marine environment
    Ling-jie Wu
    Yong-jun Zhou
    Xin-jian Kou
    Meng Jiang
    [J]. Journal of Central South University, 2015, 22 : 3608 - 3614
  • [18] Reliability-based service life prediction of existing concrete structures under marine environment
    Wu Ling-jie
    Zhou Yong-jun
    Kou Xin-jian
    Jiang Meng
    [J]. JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2015, 22 (09) : 3608 - 3614
  • [19] Probabilistic service life assessment and maintenance planning of concrete structures
    Biondini, F
    Bontempi, F
    Frangopol, DM
    Malerba, PG
    [J]. JOURNAL OF STRUCTURAL ENGINEERING-ASCE, 2006, 132 (05): : 810 - 825
  • [20] Time-dependent probabilistic modeling of corrosion propagation for service life prediction in RC structures
    Portela, E. L.
    Bittencourt, T. N.
    Beck, A. T.
    [J]. MAINTENANCE, MONITORING, SAFETY, RISK AND RESILIENCE OF BRIDGES AND BRIDGE NETWORKS, 2016, : 375 - 375