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Wendi Liu's Projects

cphy icon cphy

Class materials for computational physics course

deepxde icon deepxde

A library for scientific machine learning and physics-informed learning

dpd icon dpd

Repository for the FutureLearn MOOC "Defensive programming and debugging"

foammooring icon foammooring

Mooring restraints library for rigid body motions in OpenFOAM [A mirror]

incompact3d icon incompact3d

Current CPU version of our solver for the Navier-Stokes equations

lethe icon lethe

Repository for the open-source lethe CFD/DEM/CFD-DEM project

mlreview_notebooks icon mlreview_notebooks

Jupyter notebooks for "A high-bias, low-variance introduction to Machine Learning for physicists"

mui icon mui

Multiscale Universal Interface: A Concurrent Framework for Coupling Heterogeneous Solvers

mui-demo icon mui-demo

Demos and example solvers using MUI (Multiscale Universal Interface)

mui_utilities icon mui_utilities

The Utility codes for MUI library (https://github.com/MxUI)

parasif icon parasif

Parallel Partitioned Multi-physics Simulation Framework

parasif_cf icon parasif_cf

Parallel Partitioned Fluid-Structure Interaction (FSI) Simulation Framework employs Code_Saturne to solve the computational fluid dynamics (CFD), FEniCS to solve the computational structure mechanics (CSM) and MUI for data exchange. It offers a platform where users can carry out fluid-structure interaction studies using supercomputers.

parasif_fenics_solver_update icon parasif_fenics_solver_update

Mini-project on ParaSiF FEniCS solver update. It includes code clean-up/optimisation and FEniCS-v2019 -> FEniCS-X transfer.

pythonnumericaldemos icon pythonnumericaldemos

Well-documented Python demonstrations for spatial data analytics, geostatistical and machine learning to support my courses.

rbdl icon rbdl

RBDL is a C++ library that contains some essential and efficient rigid body dynamics algorithms such as the Articulated Body Algorithm (ABA) for forward dynamics, Recursive Newton-Euler Algorithm (RNEA) for inverse dynamics, the Composite Rigid Body Algorithm (CRBA) for the efficient computation of the joint space inertia matrix and is also able to

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