Python BEM solver for linear potential flow, based on Nemoh.
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Updated
May 23, 2024 - Python
Python BEM solver for linear potential flow, based on Nemoh.
An open-source computer program for the analysis of wave diffraction and radiation of three-dimensional floating or submerged structures
Tutorials and exercises for learning to use Bempp-cl for problems in acoustics
A Python-based Boundary Element Library
GPU-accelerated 3D vortex methods solver with easy GUI
Two-dimensional flow solver with GUI using vortex particle and boundary element methods
"Octopus Realtime Encephalography Lab" is the (hard) real-time networked EEG-lab framework I have developed during my PhD Thesis at Brain Research Lab of Hacettepe University Faculty of Medicine Biophysics Lab. It is meant to be a holistic golden-standard solution for all tasks of cortical source localization/networking, brain-computer interface…
Electromagnetic solver and electron tracer
This library implements solving and resonance finding for the Helmholtz transmission problem using Boundary Element Methods.
Benchmark of kernel matrix-vector products and inversions (regression, system resolution).
This is the three-dimensional electromagnetic field analysis program for two-dimensional periodic arrangement objects irradiated by a plane wave. This is based on boundary element method, the own developed numerical solution is used.
The author's Implementation of "Surface-Only Dynamic Deformables using a Boundary Element Method."
This is the three-dimensional acoustic wave scattering analysis program for arbitrary objects irradiated by arbitrary beams. This is the extension of "bem3_aw_b1" using iterative solution. This program can analyze multiple scattering between objects with less memory than "bem3_aw_b1".
This is the two-dimensional electromagnetic field analysis program for one-dimensional periodic arrangement objects irradiated by a TE plane wave (transverse electric wave). This is based on the boundary element method, the own developed numerical solution is used.
This is the three-dimensional acoustic wave scattering analysis program for arbitrary objects in a inviscid fluid . This is based on boundary element method, the own developed numerical solution is used. The radiation force acting on the object can be analyzed.
Implementation of the parabolic Galerkin Boundary Element Method with moving surfaces in C, my Master's thesis project (publication pending).
Simulate cells and particles
1D nonsmooth modal analysis via BEM/HBM
This is the three-dimensional electromagnetic field analysis program for arbitrary object irradiated by arbitrary beams. The radiation force acting on the object can be analyzed. This is based on boundary element method, the own developed numerical solution is used.
Finite and boundary element methods on Python
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