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Research on Analytical Method of Fatigue Characteristics of Soft Yoke Mooring System Based on Full-Scale Measurement
作者姓名:WU Wen-hu  LV Bai-cheng  YUE Qian-jin  ZHANG Yan-tao  LIN Yang
作者单位:Department of Engineering Mechanics, State key Laboratory of Structural Analysis of Industrial Equipment, Dalian University, Dalian 116024, China,Department of Engineering Mechanics, State key Laboratory of Structural Analysis of Industrial Equipment, Dalian University, Dalian 116024, China,Department of Engineering Mechanics, State key Laboratory of Structural Analysis of Industrial Equipment, Dalian University, Dalian 116024, China,Tianjin Branch, CNOOC, Tianjin 022000, China,Tianjin Branch, CNOOC, Tianjin 022000, China
基金项目:This work was financially supported by the National Natural Science Foundation of China (Grant No. 15572072), and the National Key Basic Research and Development Program (Grant Nos. 2014CB046803 and 2016ZX05028-002-005).
摘    要:By focusing on the vulnerability of the structure of marine equipments, together with considering the randomness of meta-ocean load in statistics, a kind of analytical method of fatigue characteristics of marine structure based on full-scale and actual measurement of prototype is proposed. On the basis of short-term field measurement results of structural response, research is carried out on the fatigue analysis of hinge joints at the upper part of the Soft Yoke single point Mooring System (SYMS) by simultaneously monitoring the environmental load and considering the design criteria of offshore structure. Through analysis of finite element modeling, the time-histories of typical stress response are obtained, and then the assessment of fatigue damage at key hinge joints is conducted. The simulation results indicate that the proposed method can accurately analyze the fatigue damage of offshore engineering structure caused by the effect of wave load. The present analytical method of fatigue characteristics can be extended on other offshore engineering structures subjected to meta-ocean load.

关 键 词:fatigue  characteristics  full  scale  measurement  finite  element  method  SYMS
收稿时间:2015/8/11 0:00:00
修稿时间:2016/1/26 0:00:00

Research on Analytical Method of Fatigue Characteristics of Soft Yoke Mooring System Based on Full-Scale Measurement
WU Wen-hu,LV Bai-cheng,YUE Qian-jin,ZHANG Yan-tao,LIN Yang.Research on Analytical Method of Fatigue Characteristics of Soft Yoke Mooring System Based on Full-Scale Measurement[J].Ocean Engineering,2017,31(2):230-237.
Authors:WU Wen-hu  LV Bai-cheng  YUE Qian-jin  ZHANG Yan-tao and LIN Yang
Institution:Department of Engineering Mechanics, State key Laboratory of Structural Analysis of Industrial Equipment, Dalian University, Dalian 116024, China,Department of Engineering Mechanics, State key Laboratory of Structural Analysis of Industrial Equipment, Dalian University, Dalian 116024, China,Department of Engineering Mechanics, State key Laboratory of Structural Analysis of Industrial Equipment, Dalian University, Dalian 116024, China,Tianjin Branch, CNOOC, Tianjin 022000, China and Tianjin Branch, CNOOC, Tianjin 022000, China
Abstract:By focusing on the vulnerability of the structure of marine equipments, together with considering the randomness of meta-ocean load in statistics, a kind of analytical method of fatigue characteristics of marine structure based on full-scale and actual measurement of prototype is proposed. On the basis of short-term field measurement results of structural response, research is carried out on the fatigue analysis of hinge joints at the upper part of the Soft Yoke single point Mooring System (SYMS) by simultaneously monitoring the environmental load and considering the design criteria of offshore structure. Through analysis of finite element modeling, the time-histories of typical stress response are obtained, and then the assessment of fatigue damage at key hinge joints is conducted. The simulation results indicate that the proposed method can accurately analyze the fatigue damage of offshore engineering structure caused by the effect of wave load. The present analytical method of fatigue characteristics can be extended on other offshore engineering structures subjected to meta-ocean load.
Keywords:fatigue characteristics  full scale measurement  finite element method  SYMS
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