Solve forward and inverse problems related to partial differential equations using finite basis physics-informed neural networks (FBPINNs)
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Updated
Mar 15, 2024 - Python
Solve forward and inverse problems related to partial differential equations using finite basis physics-informed neural networks (FBPINNs)
A framework for high-performance domain decomposition methods.
Solver library for computational mechanics problems
Decomposed Optimization Time Integration (DOT) is a domain-decomposed optimization method for fast, reliable simulation of deformation dynamics. DOT efficiently converges with frame-rate time-steps across a wide range of extreme conditions.
Parallel Sudoku Implementation using Charm++
Python Library for rectangular decomposition of 2D binary images. Useful for ARD(Adaptive Rectangular Decomposition) sound simulation. 🐍 📦
Mortar3D.jl is a Julia package to calculate discrete projections between non-conforming finite element mesheds. The resulting "mortar matrices" can be used to tie non-conforming finite element meshes together which are meshed separately to construct bigger models.
DDC is a discrete domain computation library.
Repository for testing asynchronous schwarz methods.
Fluid flow simulator using MFEM and multiscale space-time sub-domains.
A Robust Algebraic Domain Decomposition Preconditioner For Sparse Normal Equations
Photoelectrochemical Solar Cell Simulator in 1D
Domain decomposition learning algorithms for elliptic boundary value problems, with focus on the classical Dirichlet-Neumann and Robin-Robin algorithms.
MSc project - Applied Computational Science and Engineering at Imperial College London 2021. Topic: Domain Decomposition and Generative Adversarial Networks (DD-GAN) for modelling fluid flow
Robin-type Domain Decomposition
Photoelctrochemical Solar Cell Simulator
Repository containing deal.ii implementation of domain decomposition for Biot system of poroelasticity
Distributed implementation of the nonlocal heat equation
Parallel implementation of a simple ecosystem based on Lotka-Volterra model (Predator-Prey).
Modified version of BIotDD with more functions added. Later need to be merged with BiotDD.
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