mirror of
https://github.com/JuliaFEM/JuliaFEM.jl.git
synced 2026-08-31 08:16:23 +00:00
016e3cd8bf3a093a570522dfe938fe9fdbc09a01
force vector, autodiff takes care of linearization - elasticity equations are now solved using e.g. principle of minimum potential energy. syntax is quite good, see notebook. - updated how to interpolate fields, by introducing function spaces. syntax is now good. still have to figure out how to do time derivatives - etc. etc. tutorial is broken at the moment, i took of get_lhs and get_rhs because they didn't really work.
.. image:: https://raw.githubusercontent.com/JuliaFEM/JuliaFEM.jl/master/docs/logo/JuliaFEMLogo_256x256.png :target: https://github.com/JuliaFEM/JuliaFEM.jl ======== JuliaFEM ======== The JuliaFEM project develops open-source software for reliable, scalable, distributed Finite Element Method. .. image:: https://img.shields.io/github/license/JuliaFEM/Juliafem.jl.svg :target: https://github.com/JuliaFEM/JuliaFEM.jl/blob/master/LICENSE.md .. image:: https://badges.gitter.im/Join%20Chat.svg :target: https://gitter.im/JuliaFEM/JuliaFEM?utm_source=badge&utm_medium=badge&utm_campaign=pr-badge&utm_content=badge .. image:: https://travis-ci.org/JuliaFEM/JuliaFEM.jl.svg?branch=master :target: https://travis-ci.org/JuliaFEM/JuliaFEM.jl .. image:: https://coveralls.io/repos/JuliaFEM/JuliaFEM.jl/badge.svg?branch=master :target: https://coveralls.io/r/JuliaFEM/JuliaFEM.jl?branch=master .. image:: http://juliafem.org/_static/notebooks-status.svg?ts=1 :target: http://juliafem.org/tutorials/index.html .. image:: http://juliafem.org/_static/doctests-status.svg?ts=1 .. image:: http://juliafem.org/_static/unittests-status.svg?ts=1 .. image:: http://juliafem.org/_static/lint-status.svg?ts=1 :target: http://juliafem.org/quality/index.html#lint-report .. image:: https://img.shields.io/github/issues/JuliaFEM/JuliaFEM.jl.svg :target: https://github.com/JuliaFEM/JuliaFEM.jl/issues Documentation: http://www.juliaFEM.org GitHub repository: https://github.com/JuliaFEM/JuliaFEM.jl IRC: #juliafem @ FreeNode, https://webchat.freenode.net/ The JuliaFEM software library is a framework that allows for the distributed processing of large Finite Element Models across clusters of computers using simple programming models. It is designed to scale up from single servers to thousands of machines, each offering local computation and storage. The basic design principle is: everything is nonlinear. All physics models are nonlinear from which the linearization are made as a special cases. JuliaFEM current status: project planning Initial road map for JuliaFEM: +---------+-----------------------------+-----------------+ | version | number of degree of freedom | number of cores | +=========+=============================+=================+ | 0.1.0 | 1 000 000 | 10 | +---------+-----------------------------+-----------------+ | 0.2.0 | 10 000 000 | 100 | +---------+-----------------------------+-----------------+ | 1.0.0 | 100 000 000 | 1 000 | +---------+-----------------------------+-----------------+ | 2.0.0 | 1 000 000 000 | 10 000 | +---------+-----------------------------+-----------------+ | 3.0.0 | 10 000 000 000 | 100 000 | +---------+-----------------------------+-----------------+ We strongly believe in the test driven development as well as building on top of previous work. Thus all the new code in this project should be 100% tested. Also other people have wisdom in style as well: `The Zen of Python <https://www.python.org/dev/peps/pep-0020/>`_ | Beautiful is better than ugly. | Explicit is better than implicit. | Simple is better than complex. | Complex is better than complicated. | Flat is better than nested. | Sparse is better than dense. | Readability counts. | Errors should never pass silently. | Contributing ------------ Interested in participating? Please start by reading `CONTRIBUTING.md <https://github.com/JuliaFEM/JuliaFEM/blob/master/CONTRIBUTING.md>`_. Contributors: see `contributors <https://github.com/JuliaFEM/JuliaFEM/blob/master/contributors>`_
Languages
Julia
98%
Python
1.7%
Shell
0.3%