Resilience assessment of offshore structures subjected to ice load considering complex dependencies

被引:8
|
作者
Ramadhani, Adhitya [1 ]
Khan, Faisal [1 ,2 ]
Colbourne, Bruce [1 ]
Ahmed, Salim [1 ]
Taleb-Berrouane, Mohammed [1 ]
机构
[1] Mem Univ Newfoundland, Fac Engn & Appl Sci, Ctr Risk Integr & Safety Engn C RISE, St John, NL A1B 3X5, Canada
[2] Texas A&M Univ, Mary Kay OConnor Proc Safety Ctr MKOPSC, College Stn, TX 77843 USA
基金
加拿大自然科学与工程研究理事会;
关键词
Offshore structure; resilience assessment; copula functions; iceberg load; absorptive capacity; RISK-ASSESSMENT; INFRASTRUCTURE RESILIENCE; RELIABILITY-ANALYSIS; CRITICAL SYSTEMS; WIND TURBINE; COPULAS; MODEL; SAFETY; OIL; PERFORMANCE;
D O I
10.1016/j.ress.2022.108421
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Offshore structures in arctic and subarctic regions are subjected to various natural hazards. These structures need to be designed to withstand these natural hazards and to recover quickly after an undesirable event occurs. Ice load is a significant natural hazard for structures in these regions. The magnitude of ice load depends on the ice drifting velocity, which is influenced by other environmental conditions such as wind speed and wave activity. Most studies in the literature assume independence among these influencing environmental parameters, although they have significant dependence. In addition, there are a limited number of studies focused on analyzing the capacities of offshore structures to resist ice loads. This paper investigates an offshore structure's response to an ice load, using the concept of resilience. Resilience is quantified by considering absorptive, adaptive, and restorative capacities. Dependence between wind velocity and wave height is considered in the analysis; the Gumbel-Frank Type-1 Copula function is used to model relationships between these influencing variables. The study highlights that a mono-pile vertical structure shows resilience in terms of absorptive capacity. An offshore structure in arctic conditions needs to be designed considering both absorptive and adaptive capacities.
引用
收藏
页数:17
相关论文
共 48 条
  • [31] Implementation of ISO 19906 for probabilistic assessment of global sea ice loads on offshore structures encountering first-year sea ice
    Thijssen, Jan
    Fuglem, Mark
    Richard, Martin
    King, Tony
    2014 OCEANS - ST. JOHN'S, 2014,
  • [32] Dynamic Models for Load Calculation Procedures of Offshore Wind Turbine Support Structures: Overview, Assessment, and Outlook
    van der Valk, Paul L. C.
    Voormeeren, Sven N.
    de Valk, Pauline C.
    Rixen, Daniel J.
    JOURNAL OF COMPUTATIONAL AND NONLINEAR DYNAMICS, 2015, 10 (04):
  • [33] Dynamic Models for Load Calculation Procedures of Offshore Wind Turbine Support Structures: Overview, Assessment, and Outlook
    Section of Engineering Dynamics, Delft University of Technology, Delft
    2628CD, Netherlands
    不详
    2595BN, Netherlands
    不详
    D - 85748, Germany
    J. Comput. Nonlinear Dyn., 4
  • [34] Probabilistic resilience assessment of structures considering the functional uncertainty: A case study for external prestressed subframe in strengthening
    Cao, Xu-Yang
    Feng, De-Cheng
    ENGINEERING STRUCTURES, 2025, 332
  • [35] A Potential Strength and Ultimate Behavior of Framed Structures Considering Catenary Effects after Failure Mechanism Formation Subjected to Vertical Load
    Ito, Takumi
    Fukuyama, Tatsuya
    THEORETICAL AND APPLIED MECHANICS JAPAN, 2011, 59 : 29 - 38
  • [36] Seismic risk assessment based on seismic resilience for mid-rise CFS structures considering multiple uncertainties
    Ye, Jihong
    Hua, Wen
    STRUCTURES, 2024, 70
  • [37] Seismic risk and resilience assessment of reinforced concrete frame structures under near fault earthquakes considering uncertainties
    Xu, Jigang
    Wu, Gang
    Tang, Yuchuan
    Feng, Decheng
    Tumu Gongcheng Xuebao/China Civil Engineering Journal, 2019, 52 (10): : 46 - 55
  • [38] Analysis of the relationship between level ice draft, ridge frequency and ridge keel draft for use in the probabilistic assessment of ice ridge loads on offshore structures
    Samardzija, Ilija
    Hoyland, Knut, V
    OCEAN ENGINEERING, 2023, 270
  • [39] Numerical study and probabilistic analysis on the strength of X-joints of steel offshore structures with GFRP, AFRP, CFRPs and SFRP subjected to axial load
    Nassiraei, Hossein
    Rezadoost, Pooya
    STRUCTURES, 2024, 69
  • [40] Framework for lifecycle resilience assessment of earthquake-damaged coastal RC structures considering non-uniform corrosion
    Yang, Zhiruo
    Li, Yiming
    Tan, Ping
    Zhang, Jingzhou
    OCEAN ENGINEERING, 2024, 310