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March 1, 20260 citationsOpen Access

Methodology and case study on transferring the design methods from the Eurocodes to numerical design calculations with direct resistance check

JTJanusch TöplerGHGeorg Hochreiner

Key Points

  • This research aims to develop methods for integrating Eurocode design principles into numerical calculations for timber structures.
  • Developed a methodology for transferring design concepts from FprEN 1995-1-1 to numerical calculations.
  • Considered both two- and three-dimensional elements for direct resistance checks.
  • Addressed design verification challenges specific to timber and its material behaviour.
  • Proposed a framework to directly verify structural member designs using numerical stresses.
  • Identified key factors affecting stress distributions in timber structures.
  • Advanced discussions on standardisation efforts related to timber design methods.

Abstract

Numerical design of timber structures according to FprEN 1995-1-1 is currently limited to numerical calculations of system response quantities, e.g. internal forces, with a subsequent design verification with analytical formulas in FprEN 1995-1-1. The verifications of bar-shaped members in FprEN 1995-1-1 were developed for structural analyses with beam elements and elastic material behaviour, and factors were introduced for considering deviating stress distributions and the scattering anisotropic material behaviour of wood. For direct verifications based on stresses from numerical analyses with two- or three-dimensional elements, the question arises how the design methods from FprEN 1995-1-1 can be transferred. This contribution presents a methodology for transferring the design concepts of FprEN 1995-1-1 to numerical design calculations with direct resistance check and takes up the discussions on corresponding developments in standardisation, e.g. CEN/TC 250/SC 5/WG 11.

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Cite This Study

Töpler et al. (2025) studied this question.

synapsesocial.com/papers/69a3d8b8ec16d51705d2fd95https://doi.org/10.82203/opus-103
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