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Dept of Aerospace Engineering, Georgia Tech
- Atlanta, Georgia
Stars
Tucan remains among the simplest and most user friendly programs for aerodynamics based on vortex lattice methods. This project is unique in many ways, while the most prominent feature is that it i…
FEniCSx-based topology optimization supporting parallel computing
Stabilised FEM for incompressible Navier-Stokes (MPI based)
We simulate a wind tunnel, place a rectangular occlusion in it, and then use gradient descent to turn the occlusion into a wing.
Simulation and design of shape morphing LCE lattices
A computational building block approach towards multiscale architected materials analysis and design with application to hierarchical metal metamaterials
Matlab code for geometrically nonlinear topology optimization, including stability constraints.
This curriculum module introduces foundational concepts for solving the Navier-Stokes equations, including methods for interface advection and fluid-structure-interaction.
📈 Simulation of an oscillating airfoil
LETO is a new hybrid Lagrangian-Eulerian method for topology optimization. It transfers density information from movable Lagrangian carriers to a fixed set of Eulerian quadratures and solves force …
CPU/GPU Implicit & Explicit Finite Element Solver for Large Strains
Interface to Intel MKL Pardiso multithreaded direct linear solver
automatic differentiation made easier for C++
Stark is a C++ and Python simulation platform for the robust simulation of rigid and deformable objects in a strongly coupled manner.
Fast, easy automatic differentiation in C++
FastAD is a C++ implementation of automatic differentiation both forward and reverse mode.
Code used for my PhD thesis, "Topology optimization and lattice Boltzmann methods"
Cell centred code for explicit solid dynamics in OpenFOAM
Differentiable Finite Element Method with JAX
PyTorch implementation of tandem neural networks.
C++ library for fast computation of neighbor lists in point clouds.
Additive manufacturing simulation with JAX.
Structure and Appearance Optimization for Controllable Shape Design
Finite-element library for analysis and adjoint-based gradient evaluation