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May 2, 2026Scientific Reports0 citationsOpen Access

Numerical and experimental evaluation of the collapse resistance of MLPs under external pressure by lateral loading

FLF. LutckmeierMKMatheus Freitas KuhnADAllan Romário de Paula Dias

Key Points

  • This research focuses on understanding how mechanically lined pipes (MLPs) resist collapse under external pressure.
  • Characterization of mechanical properties and friction coefficients through lab tests.
  • Development of numerical simulations validated against full-scale collapse tests and DNV-ST-F101 design equation.
  • Parametric study analyzing effects of friction coefficient and liner thickness on collapse pressure.
  • Findings show that CRA liner significantly improves structural integrity, leading to collapse pressures above standard predictions.
  • MLPs with thicker liners exhibit higher collapse pressures compared to thinner liners.
  • Interfacial friction is identified as a key contributor to enhanced collapse resistance.

Abstract

This study aims at evaluating the collapse resistance of mechanically lined pipes (MLPs) by comparing results from experimental and numerical methods. Initially the mechanical properties of the pipe materials, and the friction coefficient between the layers of MLP, were characterized through lab tests. This data was then used to develop numerical simulations, which were subsequently validated by comparing them to the results of full-scale collapse tests and the DNV-ST-F101 design equation. A parametric study was performed to assess the influence of the friction coefficient and the thickness of the liner on collapse pressure. The findings indicate that the CRA liner provides significant structural reinforcement, leading to collapse pressures that exceed standard design predictions, particularly for MLPs with thick liners. Furthermore, the interfacial friction was also shown to be a contributing factor to this enhanced resistance.

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Cite This Study

Lutckmeier et al. (2026) studied this question.

synapsesocial.com/papers/69f593f271405d493affebfahttps://doi.org/10.1038/s41598-026-47504-8
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