Polarization Mathematic Simulation Library
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Updated
Nov 18, 2022 - Python
Polarization Mathematic Simulation Library
Notebooks, scripts and examples developed and maintained by the Underworld team.
A Python implementation of nonlinear regular wave theories (Stokes 2nd to 5th order and Fenton stream function waves)
Solvers for Stokes-type equations and saddle-point problems for scientific machine learning (SciML)
FEM for parabolic and mixed problems
FreeCAD FEM examples using Elmer as backend
A matlab implementation of the marker and cell scheme for finite differences. It is used in this case to solve the 2d stationary stokes problem.
Active repo can be found at GitLab:
Semantic segmentation of brain tissue using Mueller matrix polarimetry
Mueller matrix PyTorch library with Lu-Chipman decomposition
A loose grab-bag of python scripts I've used to help deal with KML files and other mapping-related shenanigans
Fortran codes for operation of radial gradient numerical integral on gravity field element
This CUDA code solves for steady Stokes flow for a channel of width one, length one, and with a pressure drop of magnitude P between the inlet and the outlet.
Fortran codes for height anomaly computation on or outside geoid using Stokes/Hotine numerical integral
Fortran codes for Molodensky boundary value correction to Stokes on arbitrary shape surface
LB-MultiScale — A Python library for Lattice Boltzmann simulations in heterogeneous porous media, supporting WBS and ZM schemes. From Navier–Stokes to Darcy, it enables multi-permeability modeling.
Stokes prediction and algorithm optimization with Mathematica
Stocked is a simple platform that allows users to track companies stokes and have a very fluid and user-friendly display of info.
Calculates sinking velocity of particles in water.
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