A simple solution method to 3D integral nonlocal elasticity: Isotropic-BEM coupled with strong form local radial point interpolation
Nonlocal theories are of growing interest as they can address problems that lead to unphysical results in the framework of classical models. In this work, a solution procedure for three-dimensional integral nonlocal elastic solid is presented. The approach is based on the partition of the displaceme...
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Published in | Engineering analysis with boundary elements Vol. 36; no. 4; pp. 606 - 612 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
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01.04.2012
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ISSN | 0955-7997 1873-197X |
DOI | 10.1016/j.enganabound.2011.10.004 |
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Abstract | Nonlocal theories are of growing interest as they can address problems that lead to unphysical results in the framework of classical models. In this work, a solution procedure for three-dimensional integral nonlocal elastic solid is presented. The approach is based on the partition of the displacement field into complementary and particular parts. The complementary displacement is the solution of a Navier type equation and is obtained by the boundary element method, while the particular displacement is obtained using a local radial point interpolation method. The method is illustrated by comparing the responses to some simple loadings of a solid of finite extent with the original nonlocal model of Eringen and the enhanced model of Polizzotto. |
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AbstractList | Nonlocal theories are of growing interest as they can address problems that lead to unphysical results in the framework of classical models. In this work, a solution procedure for three-dimensional integral nonlocal elastic solid is presented. The approach is based on the partition of the displacement field into complementary and particular parts. The complementary displacement is the solution of a Navier type equation and is obtained by the boundary element method, while the particular displacement is obtained using a local radial point interpolation method. The method is illustrated by comparing the responses to some simple loadings of a solid of finite extent with the original nonlocal model of Eringen and the enhanced model of Polizzotto. |
Author | Niane, N.T. Schwartz, M. Kouitat Njiwa, R. |
Author_xml | – sequence: 1 givenname: M. surname: Schwartz fullname: Schwartz, M. email: martin.schwartz@mpsa.com organization: Institut Jean Lamour, Dpt SI2M, UMR 7198 CNRS, Ecole des Mines, Parc de Saurupt, CS 14234, Nancy Cedex 54042, France – sequence: 2 givenname: N.T. surname: Niane fullname: Niane, N.T. organization: PSA Peugeot-Citroën, Centre Technique La Garenne Colombes, 18 rue des Fauvelles, La Garenne Colombes 92250, France – sequence: 3 givenname: R. surname: Kouitat Njiwa fullname: Kouitat Njiwa, R. organization: Institut Jean Lamour, Dpt SI2M, UMR 7198 CNRS, Ecole des Mines, Parc de Saurupt, CS 14234, Nancy Cedex 54042, France |
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Keywords | Radial basis function Meshfree strong form Nonlocal elasticity Isotropic-BEM Partition Navier equation Meshless method Elasticity Strong solution Modeling Boundary element method Non local theory |
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SubjectTerms | Boundary element method Displacement Exact sciences and technology Fluid flow Fundamental areas of phenomenology (including applications) Integrals Interpolation Isotropic-BEM Mathematical analysis Mathematical models Meshfree strong form Nonlocal elasticity Physics Radial basis function Solid mechanics Static elasticity (thermoelasticity...) Structural and continuum mechanics Three dimensional |
Title | A simple solution method to 3D integral nonlocal elasticity: Isotropic-BEM coupled with strong form local radial point interpolation |
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