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Computational homogenization method for the bending analysis of submarine power cables
Conference proceeding   Peer reviewed

Computational homogenization method for the bending analysis of submarine power cables

Pan Fang, Xiao Li, Xiaoli Jianga, Hans Hopmana, Yong Be and IOP PUBLISHING LTD
Journal of physics. Conference series, Vol.2647(2), p.22010
Journal of Physics Conference Series
01/06/2024

Abstract

Computer Science Computer Science, Interdisciplinary Applications Construction & Building Technology Engineering Engineering, Civil Science & Technology Technology
The complex structure and material property of a cable, particularly the stick-slip issue among its components pose the challenge for the bending analysis of submarine power cables. The calculation time and convergence problem of a full model makes the simulation unpractical during the design phase. This paper takes advantage of the peculiar structural property of helical components inside a cable, proposing a computational homogenization approach for analyzing the cable behavior under bending from global and local perspectives. This method assumes a macro model that is based on the theory of periodic beamlike structure, and a short-size micro model that is solved through a detailed finite element study. Results demonstrate the efficiency and capability of the proposed model that considers the structure nonlinearity and contact condition of a multi-layer cable with helical wires.
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https://doi.org/10.1088/1742-6596/2647/2/022010View
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