Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints

An efficient modified Fourier series-based sampling surface approach is proposed for the analytical evaluation of the vibration characteristics of thick curved beams subjected to general restraints. The theoretical models of the beams are formulated by the theory of elasticity in two dimensions, whi...

Full description

Bibliographic Details
Main Authors: Xueren Wang, Xuhong Miao, Di Jia, Shengyao Gao
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2017/2104015
id doaj-b227f21a27be4b5bb55ebf1137c6bd96
record_format Article
spelling doaj-b227f21a27be4b5bb55ebf1137c6bd962020-11-24T22:20:03ZengHindawi LimitedShock and Vibration1070-96221875-92032017-01-01201710.1155/2017/21040152104015Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General RestraintsXueren Wang0Xuhong Miao1Di Jia2Shengyao Gao3Naval Academy of Armament, Beijing 100161, ChinaNaval Academy of Armament, Beijing 100161, ChinaNaval Academy of Armament, Beijing 100161, ChinaNaval Academy of Armament, Beijing 100161, ChinaAn efficient modified Fourier series-based sampling surface approach is proposed for the analytical evaluation of the vibration characteristics of thick curved beams subjected to general restraints. The theoretical models of the beams are formulated by the theory of elasticity in two dimensions, which allows arbitrary thickness configurations to be tackled. As an innovation of this work, the approach is based upon the sampling surface method combined with the use of modified Fourier series approximation. In particular, the transverse beam domain is discretized by a set of sampling surfaces with unequal spaces, and the displacement components in beam domain coinciding with these surfaces are mathematically described as a set of modified Fourier series in which certain supplementary functions are included to remove all the relevant discontinuities with the displacements and their derivatives at the boundaries to form a mathematically complete set and guarantee the results convergent to the exact solutions. The final results are numerically solved using a modified variational principle by means of Lagrange multipliers and penalty method for the sake of arbitrary boundary conditions. The influences of transverse normal and shear deformation on the vibration characteristics with respect to the geometrical dimension and boundary conditions are systematically evaluated.http://dx.doi.org/10.1155/2017/2104015
collection DOAJ
language English
format Article
sources DOAJ
author Xueren Wang
Xuhong Miao
Di Jia
Shengyao Gao
spellingShingle Xueren Wang
Xuhong Miao
Di Jia
Shengyao Gao
Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints
Shock and Vibration
author_facet Xueren Wang
Xuhong Miao
Di Jia
Shengyao Gao
author_sort Xueren Wang
title Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints
title_short Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints
title_full Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints
title_fullStr Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints
title_full_unstemmed Effects of Transverse Deformation on Free Vibration of 2D Curved Beams with General Restraints
title_sort effects of transverse deformation on free vibration of 2d curved beams with general restraints
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2017-01-01
description An efficient modified Fourier series-based sampling surface approach is proposed for the analytical evaluation of the vibration characteristics of thick curved beams subjected to general restraints. The theoretical models of the beams are formulated by the theory of elasticity in two dimensions, which allows arbitrary thickness configurations to be tackled. As an innovation of this work, the approach is based upon the sampling surface method combined with the use of modified Fourier series approximation. In particular, the transverse beam domain is discretized by a set of sampling surfaces with unequal spaces, and the displacement components in beam domain coinciding with these surfaces are mathematically described as a set of modified Fourier series in which certain supplementary functions are included to remove all the relevant discontinuities with the displacements and their derivatives at the boundaries to form a mathematically complete set and guarantee the results convergent to the exact solutions. The final results are numerically solved using a modified variational principle by means of Lagrange multipliers and penalty method for the sake of arbitrary boundary conditions. The influences of transverse normal and shear deformation on the vibration characteristics with respect to the geometrical dimension and boundary conditions are systematically evaluated.
url http://dx.doi.org/10.1155/2017/2104015
work_keys_str_mv AT xuerenwang effectsoftransversedeformationonfreevibrationof2dcurvedbeamswithgeneralrestraints
AT xuhongmiao effectsoftransversedeformationonfreevibrationof2dcurvedbeamswithgeneralrestraints
AT dijia effectsoftransversedeformationonfreevibrationof2dcurvedbeamswithgeneralrestraints
AT shengyaogao effectsoftransversedeformationonfreevibrationof2dcurvedbeamswithgeneralrestraints
_version_ 1725777130441146368