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April 15, 2026Scientific Reports0 citationsOpen Access

Performance of the DK and DKM shell elements in the standard, and the sequential, finite-element based limit analysis

VŠVítězslav Štembera

Key Points

  • This research aims to evaluate the performance of DK and DKM shell elements in finite-element limit analysis.
  • Applied standard and sequential finite-element limit analysis.
  • Tested DK and DKM shell element classes on distorted meshes.
  • Compared the performance of quadrangle and triangle elements.
  • Estimated convergence orders for the tested shell elements.
  • DK and DKM elements show lower discretization error than strict upper-bound shell elements.
  • Numerical efficiency is higher for quadrangle elements compared to triangle elements.
  • Performance on distorted meshes is explored, revealing robust behavior.

Abstract

Abstract This paper investigates the applicability of the DK (Discrete Kirchhoff) and DKM (Discrete Kirchhoff–Mindlin) shell element classes for the first time within the framework of the standard (and sequential) finite-element-based limit analysis, which is a direct method used for determining the plastic collapse (and post-collapse) behavior of structures. Despite these elements not being able to guarantee a strict upper bound, it is shown that they exhibit a significantly lower discretization error compared to the strict upper-bound formulated shell elements used in literature. The higher numerical efficiency of quadrangle elements over triangle elements is observed. The behavior of the tested shell elements on distorted meshes is also explored and discussed. The convergence orders of the tested shell elements are also estimated.

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Cite This Study

Vítězslav Štembera (2026) studied this question.

synapsesocial.com/papers/69df2b2ce4eeef8a2a6b010bhttps://doi.org/10.1038/s41598-025-33522-5
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