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A one-dimensional thermoelastic problem due to a moving heat source under fractional order theory of thermoelasticity
He, Tianhu; Guo, Ying
刊名Advances in Materials Science and Engineering
2014
卷号2014
关键词Elasticity Laplace transforms Finite length Fractional order Governing equations Moving heat sources Numerical inversion One dimensional problems Thermoelastic problems Thermoelastics
ISSN号16878434
DOI10.1155/2014/510205
英文摘要The dynamic response of a one-dimensional problem for a thermoelastic rod with finite length is investigated in the context of the fractional order theory of thermoelasticity in the present work. The rod is fixed at both ends and subjected to a moving heat source. The fractional order thermoelastic coupled governing equations for the rod are formulated. Laplace transform as well as its numerical inversion is applied to solving the governing equations. The variations of the considered temperature, displacement, and stress in the rod are obtained and demonstrated graphically. The effects of time, velocity of the moving heat source, and fractional order parameter on the distributions of the considered variables are of concern and discussed in detail. Copyright © 2014 T. He and Y. Guo.
WOS研究方向Materials Science
语种英语
出版者Hindawi Limited, 410 Park Avenue, 15th Floor, 287 pmb, New York, NY 10022, United States
WOS记录号WOS:000340749100001
内容类型期刊论文
源URL[http://ir.lut.edu.cn/handle/2XXMBERH/113036]  
专题研究生院
作者单位School of Science, Lanzhou University of Technology, Lanzhou; 730050, China
推荐引用方式
GB/T 7714
He, Tianhu,Guo, Ying. A one-dimensional thermoelastic problem due to a moving heat source under fractional order theory of thermoelasticity[J]. Advances in Materials Science and Engineering,2014,2014.
APA He, Tianhu,&Guo, Ying.(2014).A one-dimensional thermoelastic problem due to a moving heat source under fractional order theory of thermoelasticity.Advances in Materials Science and Engineering,2014.
MLA He, Tianhu,et al."A one-dimensional thermoelastic problem due to a moving heat source under fractional order theory of thermoelasticity".Advances in Materials Science and Engineering 2014(2014).
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