Three-dimensional MLS-based numerical manifold method for static and dynamic analysis
From MaRDI portal
Publication:2334277
DOI10.1016/j.enganabound.2019.09.014zbMath1464.74186OpenAlexW2977171421WikidataQ127199968 ScholiaQ127199968MaRDI QIDQ2334277
Feng Liu, Zhijun Liu, Kaiyu Zhang
Publication date: 7 November 2019
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.enganabound.2019.09.014
Vibrations in dynamical problems in solid mechanics (74H45) Finite element methods applied to problems in solid mechanics (74S05)
Related Items (8)
A new strategy for 3D non-persistent crack propagation by the numerical manifold method with tetrahedral meshes ⋮ The MLS-based numerical manifold method for Darcy flow in heterogeneous porous media ⋮ Enrichment of three-dimensional numerical manifold method with cover-based contact theory for static and dynamic mechanical response analysis ⋮ MLS-based numerical manifold method for steady-state three-dimensional heat conduction problems of functionally graded materials ⋮ Grout penetration process simulation and grouting parameters analysis in fractured rock mass using numerical manifold method ⋮ Crack analysis using numerical manifold method with strain smoothing technique and corrected approximation for blending elements ⋮ Modelling slurry flowing and analyzing grouting efficiency under hydro-mechanical coupling using numerical manifold method ⋮ A numerical integration strategy of meshless numerical manifold method based on physical cover and applications to linear elastic fractures
Cites Work
- Unnamed Item
- Unnamed Item
- An edge-based smoothed tetrahedron finite element method (ES-T-FEM) for 3D static and dynamic problems
- Modeling complex crack problems using the numerical manifold method
- Cover refinement of numerical manifold method for crack propagation simulation
- A simple and robust three-dimensional cracking-particle method without enrichment
- Meshless methods: a review and computer implementation aspects
- High-order virtual element method on polyhedral meshes
- A domain decomposition based method for two-dimensional linear elastic fractures
- Three-dimensional fracture propagation with numerical manifold method
- The combination of the boundary element method and the numerical manifold method for potential problems
- A high-order three-dimensional numerical manifold method enriched with derivative degrees of freedom
- Structured mesh refinement in MLS-based numerical manifold method and its application to crack problems
- An edge-based smoothed numerical manifold method and its application to static, free and forced vibration analyses
- Hybrid analytical and MLS-based NMM for the determination of generalized stress intensity factors
- A coupled NMM-SPH method for fluid-structure interaction problems
- Hydraulic fracturing modeling using the enriched numerical manifold method
- Numerical manifold method for vibration analysis of Kirchhoff's plates of arbitrary geometry
- A rigorous and unified mass lumping scheme for higher-order elements
- Primal mixed solution to unconfined seepage flow in porous media with numerical manifold method
- THE NUMERICAL MANIFOLD METHOD: A REVIEW
- DEVELOPMENT OF 3D NUMERICAL MANIFOLD METHOD
- SIMULATION OF TOPPLING FAILURE OF ROCK SLOPE BY NUMERICAL MANIFOLD METHOD
- A 3D distinct lattice spring model for elasticity and dynamic failure
- Fracture modeling using meshless methods and level sets in 3D: Framework and modeling
- Numerical manifold space of Hermitian form and application to Kirchhoff's thin plate problems
- New strategies for some issues of numerical manifold method in simulation of crack propagation
- A face-based smoothed finite element method (FS-FEM) for 3D linear and geometrically non-linear solid mechanics problems using 4-node tetrahedral elements
- Surfaces Generated by Moving Least Squares Methods
- Development of high-order manifold method
- Element‐free Galerkin methods
- New perspectives on polygonal and polyhedral finite element methods
- Adaptivity for structured meshfree particle methods in 2D and 3D
- An integrated procedure for three-dimensional structural analysis with the finite cover method
- Cracking particles: a simplified meshfree method for arbitrary evolving cracks
This page was built for publication: Three-dimensional MLS-based numerical manifold method for static and dynamic analysis