Dynamical analysis of the general beam model with singularity function

Joint Authors

DEMİR, Duygu DÖNMEZ
SINIR, B. Gültekin
KAHRAMAN, Emine

Source

Journal of Engineering Research

Issue

Vol. 9, Issue 3 A (30 Sep. 2021), pp.52-63, 12 p.

Publisher

Kuwait University Academic Publication Council

Publication Date

2021-09-30

Country of Publication

Kuwait

No. of Pages

12

Main Subjects

Business Administration

Abstract EN

The aim of this study is to present a general model with variable coefficients corresponding to some structural elements such as beam, string, bar, and rod.

To solve general model with variable coefficients, a different solution procedure combining a method of multiple scales (MMS) and a finite difference method (FDM) is presented in this study.

This technique provides an advantage in the numerical solution of the structural element model containing any discontinuity and in its dynamical analysis by perturbation method.

Furthermore, two problems including discontinuity are considered to show the accuracy of the method presented.

The comparisons of the numerical results obtained from the proposed method and classical method are introduced.

American Psychological Association (APA)

DEMİR, Duygu DÖNMEZ& SINIR, B. Gültekin& KAHRAMAN, Emine. 2021. Dynamical analysis of the general beam model with singularity function. Journal of Engineering Research،Vol. 9, no. 3 A, pp.52-63.
https://search.emarefa.net/detail/BIM-1494888

Modern Language Association (MLA)

DEMİR, Duygu DÖNMEZ…[et al.]. Dynamical analysis of the general beam model with singularity function. Journal of Engineering Research Vol. 9, no. 3 A (Sep. 2021), pp.52-63.
https://search.emarefa.net/detail/BIM-1494888

American Medical Association (AMA)

DEMİR, Duygu DÖNMEZ& SINIR, B. Gültekin& KAHRAMAN, Emine. Dynamical analysis of the general beam model with singularity function. Journal of Engineering Research. 2021. Vol. 9, no. 3 A, pp.52-63.
https://search.emarefa.net/detail/BIM-1494888

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 63

Record ID

BIM-1494888