The full source code of the examples presented in the article "Multiscale finite element calculations in Python using SfePy" by Robert Cimrman, Vladimír Lukeš and Eduard Rohan. Files: heat_cond_declarative.py: a heat conduction problem using the declarative API. heat_cond_interactive.py: a heat conduction problem using the imperative API. sfepy-2018.3.tar.gz: The 2018.3 release of SfePy, containing the example of a multiscale numerical simulation of piezoelectric structure in examples/multiphysics/: piezo_elasticity_macro.py defines the macroscopic problem, piezo_elasticity_micro.py defines the computations on the reference periodic cell of the microstructure
This book offers a concise and gentle introduction to finite element programming in Python based on ...
This book offers a concise and gentle introduction to finite element programming in Python based on ...
pyMOR is a software library for building model order reduction applications with the Python programm...
SfePy (simple finite elements in Python) is a software for solving various kinds of problems describ...
The main tasks that need to be solved to create an application: develop a rental database and develo...
The main tasks that need to be solved to create an application: develop a rental database and develo...
International audiencePartial differential equations (PDEs)-such as the Navier-Stokes equations in f...
Computational physics problems often have a common set of aspects to them that any particular numeri...
Computational physics problems often have a common set of aspects to them that any particular numeri...
This release contains the source code for the two numerical examples from: Renard, Y., & Poulios, K...
BVPy is a python library to easily implement and study numerically Boundary Value Problems (BVPs) an...
pyMOR is a software library for building model order reduction applications with the Python programm...
Partial differential equations (PDEs)—such as the Navier–Stokes equations in fluid mechanics, the Ma...
pyMOR is a software library for building model order reduction applications with the Python programm...
pyMOR is a software library for building model order reduction applications with the Python programm...
This book offers a concise and gentle introduction to finite element programming in Python based on ...
This book offers a concise and gentle introduction to finite element programming in Python based on ...
pyMOR is a software library for building model order reduction applications with the Python programm...
SfePy (simple finite elements in Python) is a software for solving various kinds of problems describ...
The main tasks that need to be solved to create an application: develop a rental database and develo...
The main tasks that need to be solved to create an application: develop a rental database and develo...
International audiencePartial differential equations (PDEs)-such as the Navier-Stokes equations in f...
Computational physics problems often have a common set of aspects to them that any particular numeri...
Computational physics problems often have a common set of aspects to them that any particular numeri...
This release contains the source code for the two numerical examples from: Renard, Y., & Poulios, K...
BVPy is a python library to easily implement and study numerically Boundary Value Problems (BVPs) an...
pyMOR is a software library for building model order reduction applications with the Python programm...
Partial differential equations (PDEs)—such as the Navier–Stokes equations in fluid mechanics, the Ma...
pyMOR is a software library for building model order reduction applications with the Python programm...
pyMOR is a software library for building model order reduction applications with the Python programm...
This book offers a concise and gentle introduction to finite element programming in Python based on ...
This book offers a concise and gentle introduction to finite element programming in Python based on ...
pyMOR is a software library for building model order reduction applications with the Python programm...