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Author

  • Manfred Staat (2)
  • Manh Khuyen Truong (2)
  • Ngoc Tien Dao (2)
  • Ngoc Trinh Tran (2)
  • Thuy Ha Dinh (2)
  • Tu Luc Trinh (2)
  • Van Tan Giap (2)

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  • Article (1)
  • Conference Proceeding (1)

Keywords

  • Chance constrained programming (1)
  • Limit analysis (1)
  • Reliability of structures (1)
  • Shakedown analysis (1)
  • Stochastic programming (1)
  • chance constrained programming (1)
  • limit analysis (1)
  • reliability of structures (1)
  • shakedown analysis (1)
  • stochastic programming (1)

Institute

  • Fachbereich Medizintechnik und Technomathematik (2)
  • IfB - Institut für Bioengineering (2)

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Limit and shakedown analysis of structures under random strength (2022)
Ngoc Trinh Tran ; Tu Luc Trinh ; Ngoc Tien Dao ; Van Tan Giap ; Manh Khuyen Truong ; Thuy Ha Dinh ; Manfred Staat
Direct methods comprising limit and shakedown analysis is a branch of computational mechanics. It plays a significant role in mechanical and civil engineering design. The concept of direct method aims to determinate the ultimate load bearing capacity of structures beyond the elastic range. For practical problems, the direct methods lead to nonlinear convex optimization problems with a large number of variables and onstraints. If strength and loading are random quantities, the problem of shakedown analysis is considered as stochastic programming. This paper presents a method so called chance constrained programming, an effective method of stochastic programming, to solve shakedown analysis problem under random condition of strength. In this our investigation, the loading is deterministic, the strength is distributed as normal or lognormal variables.
FEM shakedown analysis of structures under random strength with chance constrained programming (2022)
Ngoc Trinh Tran ; Tu Luc Trinh ; Ngoc Tien Dao ; Van Tan Giap ; Manh Khuyen Truong ; Thuy Ha Dinh ; Manfred Staat
Direct methods, comprising limit and shakedown analysis, are a branch of computational mechanics. They play a significant role in mechanical and civil engineering design. The concept of direct methods aims to determine the ultimate load carrying capacity of structures beyond the elastic range. In practical problems, the direct methods lead to nonlinear convex optimization problems with a large number of variables and constraints. If strength and loading are random quantities, the shakedown analysis can be formulated as stochastic programming problem. In this paper, a method called chance constrained programming is presented, which is an effective method of stochastic programming to solve shakedown analysis problems under random conditions of strength. In this study, the loading is deterministic, and the strength is a normally or lognormally distributed variable.
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