Robust design optimization of imperfect stiffened shells using an active learning method and a hybrid surrogate model
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Publication:5059473
DOI10.1080/0305215X.2019.1702978OpenAlexW3001634733WikidataQ126300524 ScholiaQ126300524MaRDI QIDQ5059473
Hanshu Chen, Zeng Meng, Zhuohui Zhang, Bo Yu, Huan-lin Zhou
Publication date: 23 December 2022
Published in: Engineering Optimization (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/0305215x.2019.1702978
Related Items (3)
Constrained shape optimization of free-form shells considering material creep ⋮ Intelligent optimum design of large-scale gradual-stiffness stiffened panels via multi-level dimension reduction ⋮ Combined approximation based numerical vibration correlation technique for axially loaded cylindrical shells
Uses Software
Cites Work
- Nonlinear buckling optimization of composite structures considering ``worst shape imperfections
- Post-buckling analysis of a thin stiffened plate with uncertain initial deflection via interval analysis
- Robust design of structures using optimization methods
- The effect of material and thickness variability on the buckling load of shells with random initial imperfections
- Buckling analysis of imperfect shells with stochastic non-Gaussian material and thickness properties
- The particle swarm optimization algorithm: Convergence analysis and parameter selection
- Robust optimization - a comprehensive survey
- Comparison of dynamic responses of structures with uncertain-but-bounded parameters using non-probabilistic interval analysis method and probabilistic approach.
- Uncertain buckling: Its past, present and future
- Adaptive conjugate single-loop method for efficient reliability-based design and topology optimization
- A novel experimental data-driven exponential convex model for reliability assessment with uncertain-but-bounded parameters
- Reliability assessment of post-buckling compressive strength of laminated composite plates and stiffened panels under axial compression
- Novel reliability-based optimization method for thermal structure with hybrid random, interval and fuzzy parameters
- A novel non-probabilistic reliability-based design optimization algorithm using enhanced chaos control method
- The effect of non-uniformity of axial loading on the buckling behaviour of shells with random imperfections
- PROBABILISTIC DESIGN OF AXIALLY COMPRESSED COMPOSITE CYLINDERS WITH GEOMETRIC AND LOADING IMPERFECTIONS
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