A spherical harmonic-random field coupled method for efficient reconstruction of CT-image based 3D aggregates with controllable multiscale morphology
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Publication:2686902
DOI10.1016/j.cma.2023.115901OpenAlexW4317493811MaRDI QIDQ2686902
Publication date: 1 March 2023
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2023.115901
random fieldconcreteX-ray computed tomographyspherical harmonic functionaggregate packingmultiscale morphology reconstruction
Uses Software
Cites Work
- Monte Carlo simulation of complex cohesive fracture in random heterogeneous quasi-brittle materials
- Using the spherical harmonic analysis and the advancing front technique for the discretization of 3D aggregate particles
- 3D generation of realistic granular samples based on random fields theory and Fourier shape descriptors
- Advances in particle packing algorithms for generating the medium in the discrete element method
- Modeling continuous grain crushing in granular media: a hybrid peridynamics and physics engine approach
- Effective elastic moduli of nonspherical particle-reinforced composites with inhomogeneous interphase considering graded evolutions of elastic modulus and porosity
- A phase-field cohesive zone model integrated with cell-based smoothed finite element method for quasi-brittle fracture simulations of concrete at mesoscale
- Elastic properties of particle-reinforced composites containing nonspherical particles of high packing density and interphase: DEM-FEM simulation and micromechanical theory
- iDEM: An impulse-based discrete element method for fast granular dynamics
- Statistical reconstruction and Karhunen-Loève expansion for multiphase random media
- Engineered Interphase Mechanics in Single Lap Joints: Analytical and PINN Formulations
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