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Improving the initial guess for the Newton-Raphson protocol in time-dependent simulations

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Publication:2125031
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DOI10.1016/J.JCP.2020.109721OpenAlexW3044529346MaRDI QIDQ2125031

Jasper C. Volmer, Tom W. J. de Geus, Ron H. J. Peerlings

Publication date: 11 April 2022

Published in: Journal of Computational Physics (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/1912.12140


zbMATH Keywords

Newton-Raphsonlinearisationvisco-plasticitybackward EulerFFT solver


Mathematics Subject Classification ID

Computer science (68-XX) Quantum theory (81-XX) Information and communication theory, circuits (94-XX)


Related Items (2)

A review of nonlinear FFT-based computational homogenization methods ⋮ On the choice of initial guesses for the Newton-Raphson algorithm




Cites Work

  • Consistent tangent operators for rate-independent elastoplasticity
  • Computational inelasticity
  • Finite strain FFT-based non-linear solvers made simple




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