We present a general formulation for the analysis of fluid-structure interaction problems using the particle finite element method (PFEM). The key feature of the PFEM is the use of a Lagrangian description to model the motion of nodes (particles) in both the fluid and the structure domains. Nodes are thus viewed as particles which can…
International Journal of Computational Methods Template
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About the International Journal of Computational Methods format
International Journal of Computational Methods is a peer-reviewed journal published by World Scientific, covering Numerical methods in engineering, Advanced Numerical Methods in Computational Mathematics, Fluid Dynamics Simulations and Interactions.
| Publisher | World Scientific |
|---|---|
| Reference style | Superscript numbered (World Scientific) Superscript — small raised numerals in the text 1. Smith, A., Jones, B. & Lee, C. A representative article title. International Journal of Computational Methods 12, 45–58 (2023).
Formats any DOI in the closest standard style — International Journal of Computational Methods has no published style definition, so this is an approximation. No sign-up. |
| Publishes research in | Numerical methods in engineering Advanced Numerical Methods in Computational Mathematics Fluid Dynamics Simulations and Interactions Composite Structure Analysis and Optimization Geotechnical Engineering and Underground Structures |
| ISSN | 0219-8762 |
| Citation impact (2-yr) | 1.37 |
| h-index | 51 |
| i10-index | 449 |
| Total citations | 17,048 |
| Top institutions publishing here | Hunan University |
| Journal website | www.worldscinet.com |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in International Journal of Computational Methods per year
Citation impact of International Journal of Computational Methods by publication year
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Most-cited papers in International Journal of Computational Methods
This paper presents a generalized gradient smoothing technique, the corresponding smoothed bilinear forms, and the smoothed Galerkin weakform that is applicable to create a wide class of efficient numerical methods with special properties including the upper bound properties. A generalized gradient smoothing technique is first presented for computing the smoothed strain fields of displacement functions…
This paper is an overview of the main ideas of the Generalized Finite Element Method (GFEM). We present the basic results, experiences with, and potentials of this method. GFEM is a generalization of the classical Finite Element Method — in its h, p, and h-p versions — as well as of the various forms of…
This paper presents a review on the numerical manifold method (NMM), which covers the basic theories of the NMM, such as NMM components, NMM displacement approximation, formulations of the discrete system of equations, integration scheme, imposition of the boundary conditions, treatment of contact problems involved in the NMM, and also the recent developments and applications…
A linearly conforming point interpolation method (LC-PIM) is developed for 2D solid problems. In this method, shape functions are generated using the polynomial basis functions and a scheme for the selection of local supporting nodes based on background cells is suggested, which can always ensure the moment matrix is invertible as long as there are…