A novel least squares-based finite cover method for elastoplastic problems

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Authors

  • Xiaoying Zhuang
  • R. S. Crouch
  • Charles Augarde

External Research Organisations

  • University of Durham
View graph of relations

Details

Original languageEnglish
Title of host publicationComputational Plasticity X
Subtitle of host publicationFundamentals and Applications
Publication statusPublished - 1 Dec 2009
Externally publishedYes
Event10th International Conference on Computational Plasticity, COMPLAS X - Barcelona, Spain
Duration: 2 Sept 20094 Sept 2009

Publication series

NameComputational Plasticity X - Fundamentals and Applications

Abstract

A least-squares (LS) based finite cover method (FCM) is presented and extended to elastoplastic analyisis. In the present method, the physical cover functions are constructed based on LS, and the essential boundary conditions can be imposed as conveniently as in the conventional finite element method (FEM).

Keywords

    Elastoplastic analysis, Finite cover method, Least squares, Meshless

ASJC Scopus subject areas

Cite this

A novel least squares-based finite cover method for elastoplastic problems. / Zhuang, Xiaoying; Crouch, R. S.; Augarde, Charles.
Computational Plasticity X: Fundamentals and Applications. 2009. (Computational Plasticity X - Fundamentals and Applications).

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Zhuang, X, Crouch, RS & Augarde, C 2009, A novel least squares-based finite cover method for elastoplastic problems. in Computational Plasticity X: Fundamentals and Applications. Computational Plasticity X - Fundamentals and Applications, 10th International Conference on Computational Plasticity, COMPLAS X, Barcelona, Spain, 2 Sept 2009.
Zhuang, X., Crouch, R. S., & Augarde, C. (2009). A novel least squares-based finite cover method for elastoplastic problems. In Computational Plasticity X: Fundamentals and Applications (Computational Plasticity X - Fundamentals and Applications).
Zhuang X, Crouch RS, Augarde C. A novel least squares-based finite cover method for elastoplastic problems. In Computational Plasticity X: Fundamentals and Applications. 2009. (Computational Plasticity X - Fundamentals and Applications).
Zhuang, Xiaoying ; Crouch, R. S. ; Augarde, Charles. / A novel least squares-based finite cover method for elastoplastic problems. Computational Plasticity X: Fundamentals and Applications. 2009. (Computational Plasticity X - Fundamentals and Applications).
Download
@inproceedings{2d27edde8cd84eadbdf2001ec0fc6987,
title = "A novel least squares-based finite cover method for elastoplastic problems",
abstract = "A least-squares (LS) based finite cover method (FCM) is presented and extended to elastoplastic analyisis. In the present method, the physical cover functions are constructed based on LS, and the essential boundary conditions can be imposed as conveniently as in the conventional finite element method (FEM).",
keywords = "Elastoplastic analysis, Finite cover method, Least squares, Meshless",
author = "Xiaoying Zhuang and Crouch, {R. S.} and Charles Augarde",
year = "2009",
month = dec,
day = "1",
language = "English",
isbn = "9788496736696",
series = "Computational Plasticity X - Fundamentals and Applications",
booktitle = "Computational Plasticity X",
note = "10th International Conference on Computational Plasticity, COMPLAS X ; Conference date: 02-09-2009 Through 04-09-2009",

}

Download

TY - GEN

T1 - A novel least squares-based finite cover method for elastoplastic problems

AU - Zhuang, Xiaoying

AU - Crouch, R. S.

AU - Augarde, Charles

PY - 2009/12/1

Y1 - 2009/12/1

N2 - A least-squares (LS) based finite cover method (FCM) is presented and extended to elastoplastic analyisis. In the present method, the physical cover functions are constructed based on LS, and the essential boundary conditions can be imposed as conveniently as in the conventional finite element method (FEM).

AB - A least-squares (LS) based finite cover method (FCM) is presented and extended to elastoplastic analyisis. In the present method, the physical cover functions are constructed based on LS, and the essential boundary conditions can be imposed as conveniently as in the conventional finite element method (FEM).

KW - Elastoplastic analysis

KW - Finite cover method

KW - Least squares

KW - Meshless

UR - http://www.scopus.com/inward/record.url?scp=84859127464&partnerID=8YFLogxK

M3 - Conference contribution

AN - SCOPUS:84859127464

SN - 9788496736696

T3 - Computational Plasticity X - Fundamentals and Applications

BT - Computational Plasticity X

T2 - 10th International Conference on Computational Plasticity, COMPLAS X

Y2 - 2 September 2009 through 4 September 2009

ER -