Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load

This work introduces the establishment of the FEM model for investigating the dynamic behavior of trusses, subjected to multi-node constraints, under harmonic excitation based on utilizing the method of Penalty function. The technique for treating the nonlinear relationship of multi-node constraints...

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Main Authors: Dao Ngoc Tien, Vu Thi Bich Quyen, Giap Van Tan
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/95/e3sconf_emmft2023_07009.pdf
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author Dao Ngoc Tien
Vu Thi Bich Quyen
Giap Van Tan
author_facet Dao Ngoc Tien
Vu Thi Bich Quyen
Giap Van Tan
author_sort Dao Ngoc Tien
collection DOAJ
description This work introduces the establishment of the FEM model for investigating the dynamic behavior of trusses, subjected to multi-node constraints, under harmonic excitation based on utilizing the method of Penalty function. The technique for treating the nonlinear relationship of multi-node constraints is developed by using the Penalty function to extremum the Hamiltonian augmented potential energy function and to convert the multi-node constrained relation. The method of Newmark integration is utilized to convert dynamic differential equations of a truss system having multi-node boundary constraints subjected to a time-dependent harmonic force to incremental equations. The incremental-iterative algorithm had been developed based on the Newton-Raphson method, used for solving the dynamic incremental equation of motion for the truss system. Utilizing the constructed algorithm, the Matlab program is written to compute the investigated truss system’s internal force-time response and displacement-time response subjected to harmonic load. The advice for choosing the weight value of the Penalty function is proposed based on analyzing numerical results.
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spelling doaj.art-16329a09f2094e63bc02bfca3e36f6422024-01-26T10:36:36ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014580700910.1051/e3sconf/202345807009e3sconf_emmft2023_07009Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic loadDao Ngoc Tien0Vu Thi Bich Quyen1Giap Van Tan2Hanoi Architectural University, Faculty of Civil EngineeringHanoi Architectural University, Faculty of Civil EngineeringHanoi Architectural University, Faculty of Civil EngineeringThis work introduces the establishment of the FEM model for investigating the dynamic behavior of trusses, subjected to multi-node constraints, under harmonic excitation based on utilizing the method of Penalty function. The technique for treating the nonlinear relationship of multi-node constraints is developed by using the Penalty function to extremum the Hamiltonian augmented potential energy function and to convert the multi-node constrained relation. The method of Newmark integration is utilized to convert dynamic differential equations of a truss system having multi-node boundary constraints subjected to a time-dependent harmonic force to incremental equations. The incremental-iterative algorithm had been developed based on the Newton-Raphson method, used for solving the dynamic incremental equation of motion for the truss system. Utilizing the constructed algorithm, the Matlab program is written to compute the investigated truss system’s internal force-time response and displacement-time response subjected to harmonic load. The advice for choosing the weight value of the Penalty function is proposed based on analyzing numerical results.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/95/e3sconf_emmft2023_07009.pdf
spellingShingle Dao Ngoc Tien
Vu Thi Bich Quyen
Giap Van Tan
Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load
E3S Web of Conferences
title Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load
title_full Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load
title_fullStr Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load
title_full_unstemmed Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load
title_short Penalty function method for FEM dynamic analysis of trusses with nonlinear multi-node constraints under harmonic load
title_sort penalty function method for fem dynamic analysis of trusses with nonlinear multi node constraints under harmonic load
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/95/e3sconf_emmft2023_07009.pdf
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