DOE OSTI · 2583249
Grain2Mesh: Mesh Generation for Grain-Scale Nonlinear Elasticity Modeling
Abstract
The nonlinear hysteretic behavior of rocks under cyclic loading is a crucial area of study in geomechanics. The macroscopic response of a variety of materials has been found to be contingent upon the behavior of the micro-scale structure. This project aims to develop a functional and maintainable software package for generating a multi-phase numerical mesh and accompanying simulation files for finite element modeling used in computational mechanics solvers. Meshes generated from images often lack key preprocessing that reduces noise and prevents mesh element distortion that can increase computational cost. By incorporating user feedback throughout, grain2mesh ensures a high-fidelity mesh that can be used to model grain-scale interactions such as shearing, crack propagation, and interfacial material contrast. Scientific applications of this software include material fracturing, stress-strain analysis for natural and engineered materials, and nonlinear meso-scale analysis.
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Davis, Keegan Scott [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)]. 2025-08-13. Grain2Mesh: Mesh Generation for Grain-Scale Nonlinear Elasticity Modeling. https://doi.org/10.2172/2583249
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