Results 131 to 140 of about 2,173 (169)
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Study of an Explicit Meshless Method Using RPIM for Electromagnetic Fields
IEEE Transactions on Magnetics, 2013An explicit meshless method for analyzing electromagnetic fields is proposed in this paper. In the proposed method, the wave equation and the Lorentz gauge are discretized using the radial point interpolation method (RPIM) and Newmark's $\beta$ method. The Taylor series expansion is also used to obtain an explicit scheme.
Yoshikazu Tanaka +2 more
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Comparison of PIM and RPIM Solutions of Elasto-Plastic Thick Beams
International Journal of Aerospace and Lightweight Structures (IJALS), 2013In this study, the point interpolation method (PIM) and radial point interpolation method (RPIM) solutions of elasto-plastic thick beams are compared by using standard Gaussian integration and a nodal integration based on Taylor series expansion.
Bahattin Kanber, Nurettin Furkan Dogan
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The anisotropic elasto-plastic analysis using a natural neighbour RPIM version
Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2016In this work, the natural neighbour radial point interpolation method (NNRPIM), an advanced discretization meshless technique, is used to study several solid mechanics benchmark examples considering an elasto-plastic approach. The NNRPIM combines the radial point interpolators (RPI) with the natural neighbour geometric concept.
S. F. Moreira +3 more
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A linearly conforming radial point interpolation method (LC-RPIM) for shells
Computational Mechanics, 2008zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Zhao, X. +5 more
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A meshfree radial point interpolation method (RPIM) for three-dimensional solids
Computational Mechanics, 2005zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Liu, Gui-Rong +3 more
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International Journal of Computational Methods, 2015
In this paper, tetrahedral background cells are used in nodal integration of radial point interpolation method (RPIM). The nodal integration is based on Taylor series terms and it is originally applied for the solutions of 2D problems in literature.
Yavuz, M. M., Kanber, B.
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In this paper, tetrahedral background cells are used in nodal integration of radial point interpolation method (RPIM). The nodal integration is based on Taylor series terms and it is originally applied for the solutions of 2D problems in literature.
Yavuz, M. M., Kanber, B.
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RPIM Meshless method for Numerical Solution of Natural Convection in Porous Square Cavity
AIP Conference Proceedings, 2018This paper proposed meshless Radial Point Interpolation Meshless Methods (RPIM) method for numerical solution of natural convection in Darcy porous square cavity. It is assumed that Boussinesq approximation is valid to characteristic the buoyancy effect as the driving force of the fluid flow.
Pranowo, ., Santoso, Albertus Joko
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Radial Point Interpolation Method (RPIM) for the Meshless Analysis of Graphene Nano Ribbon
IETE Journal of Research, 2019This paper proposes the usage of an adaptive meshless method – radial point interpolation method (RPIM) for the analysis of armchair graphene nano ribbon (GNR) to be used for interconnect applicati...
J. Nivetha, S. Kanthamani
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ASSESSMENT OF RPIM SHAPE PARAMETERS FOR SOLUTION ACCURACY OF 2D GEOMETRICALLY NONLINEAR PROBLEMS
International Journal of Computational Methods, 2013This study discussed the effects of shape parameters on the radial point interpolation method (RPIM) accuracy in 2D geometrically nonlinear problems. Four finite deformation problems with compressible Neo-Hookean material are numerically solved with the RPIM algorithm using the multi-quadric (MQ) radial basis function.
O. YAVUZ BOZKURT +2 more
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Performance Analyses of Perfectly Matched Layer Applied to the Node-based RPIM Method
2018 IEEE Asia-Pacific Conference on Antennas and Propagation (APCAP), 2018To facilitate the node-based meshless method on numerical modeling and simulation of open-domain structures and radiation problems, we introduce and present the perfectly matched layer (PML) absorbing boundary condition (ABC) to the radial point interpolation method (RPIM) in this work.
Junfeng Wang, Jinyan Li, Zhizhang Chen
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