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Approaches to improve the convergence and efficiency of the implicit stress integration algorithm for the unified hardening model

  • Yu Tian
  • , Lianqun Li
  • , Yangping Yao*
  • , Dechun Lu
  • , Xiuli Du
  • *此作品的通讯作者
  • Beijing University of Technology

科研成果: 期刊稿件文章同行评审

摘要

To realize the numerical calculation of the unified hardening (UH) model for soils, the closest point projection method (CPPM) is used to do the stress integration in the finite element analysis. A package of approaches is proposed to improve the convergence and efficiency of the algorithm. An implicit differentiation method, which can greatly save the computational cost and storage space, is employed to calculate the second derivatives of the 3D yield function generalized by the transformed stress (TS) method. In addition, the denominator of the UH law is equal to 0 at the characteristic state and critical state, while the TS equation contains a square root and may be invalid for tensile stress. These singular problems are solved by introducing subtle treatments without changing the calculation results of the UH model. The consistent tangent operator corresponding to the stress integration can be expressed in a concise form. Finally, a series of simple loading tests and finite element simulations of the bearing capacity of a rigid circular foundation are conducted to evaluate the accuracy, convergence and efficiency of the proposed algorithm.

源语言英语
文章编号105992
期刊Computers and Geotechnics
166
DOI
出版状态已出版 - 2月 2024

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