A framework for Smoothed Particle Hydrodynamics in Python
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Updated
Aug 20, 2024 - Python
A framework for Smoothed Particle Hydrodynamics in Python
Netgen/NGSolve is a high performance multiphysics finite element software. It is widely used to analyze models from solid mechanics, fluid dynamics and electromagnetics. Due to its flexible Python interface new physical equations and solution algorithms can be implemented easily.
2D-Finite Element Analysis with Python
🔍 finite element analysis for continuum mechanics of solid bodies
Crystal plasticity finite element code, VUMAT file for Abaqus
An open source parallel C++ package for the material point method (MPM)
🧮 An Open Source, Parallel and Heterogeneous Finite Element Analysis Framework
Cell centred code for explicit solid dynamics in OpenFOAM
Automatic Differentiation for Solid Mechanics
The working repository for my PhD project at the Centre for Scientific Computing, Cambridge
Utilities for doing calculations in continuum mechanics.
This project shows how to create a compilation project for MFront properties, behaviours and models
Extension of DOLFINx implementing the concept of external operator
BERT is a dataset that presents vibration tests performed on an aluminum beam with a bolted joint with various tightening torques and hysteresis effects. This experiment was conducted at the SHM Lab from UNESP Ilha Solteira.
Some Jupyter Notebooks I am creating for the course Applied Elasticity at IIT Kharagpur
dolfinx_materials is a Python add-on package to the dolfinx interface to the FEniCSx project. It enables the user to define complex material constitutive behaviors which are not expressible using classical UFL operators.
Files for the course "Advanced Mechanics of Solids" in the Mechanical Engineering department of IIT Kharagpur
A Jupyter Notebook implementation of Physics-informed neural network to solve solid mechanics problem.
A minimalist FEM program in C++ (single header)
A direct Jacobian total Lagrangian explicit dynamics finite element algorithm for real-time simulation of hyperelastic materials
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