Random field of homogeneous and multi-material structures by the smoothed finite element method and Karhunen-Loève expansion
From MaRDI portal
Publication:6578060
DOI10.1016/J.ENGANABOUND.2024.105784MaRDI QIDQ6578060
Shao-Wei Wu, Jiaxing Han, Lixiong Cao, G. R. Liu
Publication date: 24 July 2024
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
dimension reductionrandom fieldstochastic analysisKarhunen-Loève expansionsmoothed finite element methodnon-intrusive method
Could not fetch data.
Cites Work
- Title not available (Why is that?)
- Generalized stochastic cell-based smoothed finite element method (GS\_CS-FEM) for solid mechanics
- Generalized Neumann expansion and its application in stochastic finite element methods
- The stochastic finite element method: past, present and future
- A comprehensive framework for verification, validation, and uncertainty quantification in scientific computing
- Locking-free stabilized conforming nodal integration for meshfree Mindlin--Reissner plate formulation
- Non-probabilistic polygonal convex set model for structural uncertainty quantification
- A new stochastic isogeometric analysis method based on reduced basis vectors for engineering structures with random field uncertainties
- Isogeometric fluid-structure interaction analysis with applications to arterial blood flow
- A smoothed finite element method for mechanics problems
- Robust and efficient methods for stochastic finite element analysis using Monte Carlo simulation
- Stochastic analysis using the generalized perturbation stable node-based smoothed finite element method
- A stochastic perturbation edge-based smoothed finite element method for the analysis of uncertain structural-acoustics problems with random variables
- Faster computation of the Karhunen-Loève expansion using its domain independence property
- Deep UQ: learning deep neural network surrogate models for high dimensional uncertainty quantification
- An adaptive edge-based smoothed finite element method (ES-FEM) for phase-field modeling of fractures at large deformations
- A unified-implementation of smoothed finite element method (UI-SFEM) for simulating biomechanical responses of multi-materials orthodontics
- An \(n\)-sided polygonal selective smoothed finite element method for nearly incompressible visco-hyperelastic soft materials
- Physics-informed machine learning with conditional Karhunen-Loève expansions
- Stochastic hybrid perturbation technique-based smoothed finite element-statistical energy method for mid-frequency analysis of structure-acoustic systems with parametric and nonparametric uncertainties
- Stochastic stable node-based smoothed finite element method for uncertainty and reliability analysis of thermo-mechanical problems
- Heritage and early history of the boundary element method
- Stochastic interval analysis for structural natural frequencies based on stochastic hybrid perturbation edge-based smoothing finite element method
- Optimal sparse polynomial chaos expansion for arbitrary probability distribution and its application on global sensitivity analysis
- Arbitrary polygon mesh for elastic and elastoplastic analysis of solids using smoothed finite element method
- Modeling surface tension in smoothed particle hydrodynamics using Young-Laplace pressure boundary condition
- A stabilized conforming nodal integration for Galerkin mesh-free methods
- Extended finite element method coupled with face-based strain smoothing technique for three-dimensional fracture problems
- Theoretical aspects of the smoothed finite element method (SFEM)
- Smooth finite element methods: Convergence, accuracy and properties
- A NORMED G SPACE AND WEAKENED WEAK (W2) FORMULATION OF A CELL-BASED SMOOTHED POINT INTERPOLATION METHOD
- A Locking-Free Face-Based S-FEM via Averaging Nodal Pressure using 4-Nodes Tetrahedrons for 3D Explicit Dynamics and Quasi-statics
- A Concept of Cell-Based Smoothed Finite Element Method Using 10-Node Tetrahedral Elements (CS-FEM-T10) for Large Deformation Problems of Nearly Incompressible Solids
- An ABAQUS Implementation of the Cell-Based Smoothed Finite Element Method (CS-FEM)
- A G space theory and a weakened weak (W2 ) form for a unified formulation of compatible and incompatible methods: Part I theory
- A G space theory and a weakened weak (W2 ) form for a unified formulation of compatible and incompatible methods: Part II applications to solid mechanics problems
- Nonlinear Solid Mechanics for Finite Element Analysis: Statics
- Reduced basis stochastic Galerkin methods for partial differential equations with random inputs
- Reduced order isogeometric boundary element methods for CAD-integrated shape optimization in electromagnetic scattering
- An implicit material point method for micropolar solids undergoing large deformations
- Volumetric embedded entities for the isogeometric analysis of complex structures
- Buckling analysis of thin plates using direct interpolation boundary element method
This page was built for publication: Random field of homogeneous and multi-material structures by the smoothed finite element method and Karhunen-Loève expansion
Report a bug (only for logged in users!)Click here to report a bug for this page (MaRDI item Q6578060)