4.7 Article

Alternative approach for imperfection-tolerant design optimization of stiffened cylindrical shells via energy barrier method

期刊

THIN-WALLED STRUCTURES
卷 172, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.tws.2021.108838

关键词

Stiffened cylindrical shell; Imperfection-tolerant design; Energy barrier method; Optimization

资金

  1. National Natural Science Foundation of China [11772078, 11825202]
  2. National Key Research and Development Program of China [2021YFF0306400]
  3. National Defense Basic Research Program, China [JCKY2020110]
  4. Fundamental Research Funds for the Central Universities, China [DUT2019TD37, DUT21GF201]

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In this study, an imperfection-tolerant design optimization framework for stiffened cylindrical shells is established using the energy barrier method and the numerical-based smeared stiffener method. The proposed method provides an efficient way to obtain the design configuration of a stiffened cylindrical shell with higher imperfection tolerance capacity.
Imperfection sensitivity analysis of stiffened shells generally involves high computational cost, thus imperfection-tolerant design is a challenging issue. The concept of using the energy barrier to predict the buckling load of imperfect cylindrical shells has exhibited potential for practical application. In this study, the energy barrier method is used for stiffened cylindrical shells to obtain the minimum post-buckling load, and the numerical-based smeared stiffener method (NSSM) is employed to accelerate the analysis process. Then, an imperfection-tolerant design optimization framework for stiffened cylindrical shells is established via energy barrier method. Results show that the design configuration of a stiffened cylindrical shell with higher imperfection tolerance capacity can be obtained by the proposed method in a more efficient manner.

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