2D-Finite Element Analysis with Python
- Updated
Dec 27, 2024 - Python
2D-Finite Element Analysis with Python
physics-informed neural network for elastodynamics problem
EasyFEA is a user-friendly Python library that simplifies finite element analysis.
Finite Element Modeling (FEM) Code: Python Tools, Field II Intensity Field Solution, LS-DYNA Pre/Post Processing
Utilities for doing calculations in continuum mechanics.
Semiemperical quasiharmonic thermal elasticity
Bolted Joint Stress Field Model
Python code for solving 3D structural problems with uncertainties using the finite element method
The autoscaling simulation toolbox provides tools to experiment with policies for multilayered autoscaling (inc. VM clusters and applications). Multiverse simulator is the core of the toolbox. Using it, one can evaluate autoscaling policies under different conditions, including various applications, platforms, and workloads.
A Python package that can verify the necessary and sufficient elastic stability conditions in various crystal systems
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Simulations for snake kinematics with anisotropic friction.
Library for finding Lorentzian distributions using machine learning.
A pure python finite element solver based on volmdlr 3D modeler
A Finite Element solver for thermoelasticity in Python
Implementation of a generalised von Kármán model for multilayered plates
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Bauer, J. K., & Böhlke, T. (2022). On the dependence of orientation averaging mean field homogenization on planar fourth-order fiber orientation tensors. Mechanics of Materials, 104307.
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