PROPOSAL OF PERFORMANCE-BASED SEISMIC FRAGILITY CONCEPT RELATED TO FAILURE MODES FOR A PIPING SYSTEM

被引:0
|
作者
Mano, Akihiro [1 ]
Sato, Takuya [1 ]
Ichimiya, Masakazu [1 ]
Kasahara, Naoto [1 ]
机构
[1] Univ Tokyo, Tokyo, Japan
关键词
Piping system; seismic fragility; failure mode; flow rate; core cooling performance;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
After the Great East Japan earthquake, the countermeasures for beyond design basis events (BDBEs) have become more important. For a component, mitigation of a consequence of a failure in terms of impact on safety performance is required in addition to prevention of the failure. One of the key issues regarding BDBE is a structural failure of a piping system subjected to excessive earthquakes. The piping systems have various kinds of failure modes such as collapse, break, ratchet deformation and fatigue. Collapse and break can lead to significance degradation of core cooling performance. On the other hand, small deformation or fatigue clack have small impact on the cooling performance. However, the existing seismic fragility does not take into account the failure consequence and its dependency on failure modes. In this paper, we propose a new concept regarding performance-based seismic fragility for BDBEs by including failure consequence. In the concept, the core cooling performance is taken as the most important safety performance. The performance degradation is evaluated as failure consequence considering the dependency on the failure modes by the following approaches. As for collapse, the approach differs by the existence of a crack in the piping system. In case a crack is not included, the large deformation is estimated to occur in the piping. Based on the deformation, change in geometry of a flow channel of coolant is estimated. Considering the flow channel, change in a flow rate is estimated. Finally, the performance degradation by the flow rate change is evaluated. On the other hand, in case a crack is included, a break of the piping and a leak from the break point can occur. Based on the break size, a leak rate and change in flow rate is estimated. Finally, the performance degradation based on the flow rate change is evaluated. As for ratchet, deformation of the piping due to an earthquake is estimated. Based on the deformation, the performance degradation is evaluated by the same approach as the collapse of piping with no cracks. As for fatigue, the size of a through-wall crack initiated by an earthquake is estimated. Based on the crack size, the performance degradation is evaluated by the same approach as the collapse of piping with a crack.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Proposal of performance-based fragility concept incorporating failure consequence and application to seismic fragility of piping systems
    Mano, Akihiro
    Sato, Takuya
    Ichimiya, Masakazu
    Kasahara, Naoto
    MECHANICAL ENGINEERING JOURNAL, 2024, 11 (02):
  • [2] Performance-based seismic fragility analysis of tall hybrid structures
    He, Yi-Bin
    Li, Yan
    Shen, Pu-Sheng
    Gongcheng Lixue/Engineering Mechanics, 2013, 30 (08): : 142 - 147
  • [3] Performance-based seismic fragility analysis of CFST frame structures
    Liu, Jingbo
    Liu, Yangbing
    Yan, Qiushi
    Han, Qiang
    Tumu Gongcheng Xuebao/China Civil Engineering Journal, 2010, 43 (02): : 39 - 47
  • [4] Seismic Assessment of Petrochemical Piping Systems Using a Performance-Based Approach
    Bursi, Oreste S.
    Paolacci, Fabrizio
    Reza, Md Shahin
    Alessandri, Silvia
    Tondini, Nicola
    JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 2016, 138 (03):
  • [5] Performance-based concept on seismic evaluation of existing bridges
    Yu-Chi Sung
    Wen-I. Liao
    W. Phillip Yen
    Earthquake Engineering and Engineering Vibration, 2009, 8 : 127 - 135
  • [6] Performance-based concept on seismic evaluation of existing bridges
    W.Phillip Yen
    Earthquake Engineering and Engineering Vibration, 2009, 8 (01) : 127 - 135
  • [7] Performance-based concept on seismic evaluation of existing bridges
    Sung, Yu-Chi
    Liao, Wen-I
    Yen, W. Phillip
    EARTHQUAKE ENGINEERING AND ENGINEERING VIBRATION, 2009, 8 (01) : 127 - 135
  • [8] Fragility analysis for performance-based seismic design of engineered wood shearwalls
    Kim, JH
    Rosowsky, DV
    JOURNAL OF STRUCTURAL ENGINEERING, 2005, 131 (11) : 1764 - 1773
  • [9] Seismic fragility analysis in the probabilistic performance-based earthquake engineering framework: an overview
    Ghosh, Swarup
    Ghosh, Shyamal
    Chakraborty, Subrata
    INTERNATIONAL JOURNAL OF ADVANCES IN ENGINEERING SCIENCES AND APPLIED MATHEMATICS, 2021, 13 (01) : 122 - 135
  • [10] Seismic fragility analysis in the probabilistic performance-based earthquake engineering framework: an overview
    Swarup Ghosh
    Shyamal Ghosh
    Subrata Chakraborty
    International Journal of Advances in Engineering Sciences and Applied Mathematics, 2021, 13 : 122 - 135