Finite and boundary element methods on Python
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Updated
Feb 29, 2024 - Python
Finite and boundary element methods on Python
This is the two-dimensional electromagnetic field analysis program for arbitrary objects irradiated by a TM plane wave (transverse magnetic wave). This is based on the boundary element method, the own developed numerical solution is used.
This is the two-dimensional electromagnetic field analysis program for one-dimensional periodic arrangement objects irradiated by a TM plane wave (transverse magnetic wave). This is based on the boundary element method, the own developed numerical solution is used.
Interpolation of function value inside boundry element and grid generation
A Python library for shape UQ based on Bempp 3.3.4
This code supplements arXiv:2108.03055, where we describe an adaptive boundary element method for the heat equation.
Numerical Methods
This is the two-dimensional electromagnetic field analysis program for arbitrary 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.
A boundary element method (BEM) code for solving the extracellular-membrane-intracellular (EMI) model.
A modeling tool for CMUT non-linear dynamics and contact mechanics
CUDA-accelerated Nonlocal Electrostatics in Structured Solvents
Material for the course of Introduction to the boundary element method
This is the three-dimensional acoustic wave scattering analysis program for two-dimensional periodic arrangement objects irradiated by a plane wave. The radiation force acting on the object can be analyzed. This is based on boundary element method, the own developed numerical solution is used.
Field Panel Method for solving the Full Potential Equation
A Repository to keep all the stuff related to learning FMM Method
This is the three-dimensional electromagnetic field analysis program for one-dimensional periodic arrangement objects irradiated by a plane wave. This is based on boundary element method, the own developed numerical solution is used.
Explore the internal principle and performance of boundary element method by solving a simple Dirichlet problem
UGUCA: a spectral-boundary-integral method for modeling fracture and friction. To cite this Original Software Publication: https://www.sciencedirect.com/science/article/pii/S2352711021000959
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