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Titolo: An application of the Method of Arbitrary Lines to 3D elastic stress analysis
Autore: Kaminishi, K; Ando, R;
 Indirizzi:
 Yamaguchi Univ, Dept Mech Engn, Ube, Yamaguchi 7558611, Japan Yamaguchi Univ Ube Yamaguchi Japan 7558611 Ube, Yamaguchi 7558611, Japan
 Titolo Testata:
 JSME INTERNATIONAL JOURNAL SERIES ASOLID MECHANICS AND MATERIAL ENGINEERING
fascicolo: 3,
volume: 44,
anno: 2001,
pagine: 323  329
 SICI:
 13447912(200107)44:3<323:AAOTMO>2.0.ZU;2Z
 Fonte:
 ISI
 Lingua:
 ENG
 Keywords:
 numerical analysis; computational mechanics; Method of Arbitrary Lines; elasticity; finite element method; threedimensional analysis;
 Tipo documento:
 Article
 Natura:
 Periodico
 Settore Disciplinare:
 Engineering, Computing & Technology
 Citazioni:
 4
 Recensione:
 Indirizzi per estratti:
 Indirizzo: Kaminishi, K Yamaguchi Univ, Dept Mech Engn, 2161 Tokiwadai, Ube, Yamaguchi 7558611, Japan Yamaguchi Univ 2161 Tokiwadai Ube Yamaguchi Japan 7558611 n



 Citazione:
 K. Kaminishi e R. Ando, "An application of the Method of Arbitrary Lines to 3D elastic stress analysis", JSME A, 44(3), 2001, pp. 323329
Abstract
The MAL (Method of Arbitrary Lines) is a technique of reducing a partial differential equation to a system of ordinary differential equations. It is known that relevant use of this procedure yields high accuracy in some problems of twodimensional elasticity and elastoplasticity. Since the basic concept of MAL is simple and based on generality, it is expected that many problems in other fields will be effectively solvable by this method. In thisstudy, we consider the application of MAL to 3D (threedimensional) elasticity analysis. We first give a MAL formulation of 3D elasticity problems, and demonstrate its effectiveness and accuracy for a typical problem. The reported numerical results are compared with the exact solution or that of the finite element method (FEM).
ASDD Area Sistemi Dipartimentali e Documentali, Università di Bologna, Catalogo delle riviste ed altri periodici
Documento generato il 03/04/20 alle ore 10:16:09