The smoothed finite element method (S-FEM): A framework for the design of numerical models for desired solutions
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Summary
The S-FEM is ideal for automation in computations and adaptive analyses, and hence has profound impact on AI-assisted modeling and simulation, and can now purposely design an S-fEM model to obtain solutions with special properties as wish, meaning that S- FEM offers a framework for design numerical models with desired properties.
- Type
- article
- Published
- 2019-03-12
- Cited by
- 53
- References
- 214
- OpenAlex
- https://openalex.org/W2913724452
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:88463895
Keywords
Finite element method, Smoothed finite element method, Polygon mesh, Computer science, Smoothing
References
- Reliability Based Topology Optimization of a Linear Piezoelectric Micromotor Using the Cell-Based Smoothed Finite Element Method
- A hybrid smoothed finite element method (H-SFEM) to solid mechanics problems
- A Smoothed Finite Element Method (SFEM) for Linear and Geometrically Nonlinear Analysis of Plates and Shells
- An edge-based/node-based selective smoothed finite element method using tetrahedrons for cardiovascular tissues
- Smoothed Particle Hydrodynamics: A Meshfree Particle Method
- Three-dimensional variable-node elements based upon CS-FEM for elastic-plastic analysis
- A coupled smoothed finite element method (S-FEM) for structural-acoustic analysis of shells
- Acoustic simulation using α-FEM with a general approach for reducing dispersion error
- Computational Inverse Techniques in Nondestructive Evaluation
- A smoothed finite element method for analysis of anisotropic large deformation of passive rabbit ventricles in diastole
- Influence of material property variability on the mechanical behaviour of carotid atherosclerotic plaques: A 3D fluid-structure interaction analysis
- Mesh Free Methods: Moving Beyond the Finite Element Method
- Nonlinear Finite Elements for Continua and Structures
- A Smoothed Finite Element Method (S-FEM) for Large-Deformation Elastoplastic Analysis
- Efficient smoothed finite element time domain analysis for photonic devices.
- An enhanced cell‐based smoothed finite element method for the analysis of Reissner–Mindlin plate bending problems involving distorted mesh
- On Partitions of Unity Property of Nodal Shape Functions: Rigid-Body-Movement Reproduction and Mass Conservation
- Hybrid smoothed finite element method for two dimensional acoustic radiation problems
- Selective smoothed finite element methods for extremely large deformation of anisotropic incompressible bio‐tissues
- Bubble‐enhanced smoothed finite element formulation: a variational multi‐scale approach for volume‐constrained problems in two‐dimensional linear elasticity
Cited by
- Dynamic brittle crack propagation modeling using singular edge-based smoothed finite element method with local mesh rezoning
- A stabilized node-based smoothed radial point interpolation method for functionally graded magneto-electro-elastic structures in thermal environment
- Assessment and structural improvement on the performance of soil chamber system of EPB shield assisted with DEM modeling
- Crack analysis using numerical manifold method with strain smoothing technique and corrected approximation for blending elements
- A novel hybrid deterministic-statistical approach for the mid-frequency vibro-acoustic problems
- Reliability mesh convergence analysis by introducing expanded control variates
- A selective smoothed finite element method with visco‐hyperelastic constitutive model for analysis of biomechanical responses of brain tissues
- Punching of reinforced concrete slab without shear reinforcement: Standard models and new proposal
- Towards the simulation of active cardiac mechanics using a smoothed finite element method.
- Cell-based smoothed finite element method for modelling interfacial cracks with non-matching grids
- Strategy to Improve Edge-Based Smoothed Finite Element Solutions Using Enriched 2D Solid Finite Elements
- Design and analysis of O-ring polymer gasket for flanged bolted joints in seawater piping using α-FEM
- A hybrid plane wave expansion/edge-based smoothed finite element method for band structures simulation of semi-infinite beam-like phononic crystals
- Phase-field model for brittle fracture based on the inner-element edge-based smoothed finite method (IES-FEM)
- Julia Language in Computational Mechanics: A New Competitor
- Effects of partially supported elastic foundation on free vibration of FGP plates using ES-MITC3 elements
- A cell-based smoothed finite element method for finite elasticity
- A Node-Based Strain Smoothing Technique for Free Vibration Analysis of Textile-Like Sheet Materials
- An Alpha Finite Element Method for Linear Static and Buckling Analysis of Textile-Like Sheet Materials
- Crack analysis using a hybrid numerical manifold method with node-based strain smoothing and double-interpolation
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