FEMEngine — реализация метода конечных элементов на основе функционального и шаблонного метапрограммирования на языке C++ (Алексей Гурин, ISPRASOPEN-2019) — различия между версиями
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;{{SpeakerInfo}}: {{Speaker|Алексей Гурин}} <blockquote> The talk discusses a problems of a finite element method programming. Modern C++ functional programming and template metaprogramming approach to finite element analysis is presented. This approach simplifies the implementation of an effective assembly of a stiffness matrix for a problem defined by a weak form. This method are tested by solution of a Poisson equation on unstructured 3D tetrahedral mesh on FEM C++ library FEMEngine developed by authors. Function which calculates the matrix is generated by higher order functions on compilation time. Performance of the computation is assessed by comparison with FreeFem++ code and by studying of a disassembled code. </blockquote> {{VideoSection}} {{vimeoembed|240322331|800|450}} {{youtubelink|}}|eRD_fl8jHc0}} {{letscomment}} {{SlidesSection}} [[File:FEMEngine — реализация метода конечных элементов на основе функционального и шаблонного метапрограммирования на языке C++.pdf|left|page=-|300px]] {{----}} [[File:{{#setmainimage:FEMEngine — реализация метода конечных элементов на основе функционального и шаблонного метапрограммирования на языке C++!.jpg}}|center|640px]] {{LinksSection}} <!-- * [ Talks page on site] --> <!-- <blockquote>[©]</blockquote> --> {{fblink|2541976722722000}} |
Текущая версия на 00:23, 20 мая 2022
- Докладчик
- Алексей Гурин
The talk discusses a problems of a finite element method programming. Modern C++ functional programming and template metaprogramming approach to finite element analysis is presented. This approach simplifies the implementation of an effective assembly of a stiffness matrix for a problem defined by a weak form. This method are tested by solution of a Poisson equation on unstructured 3D tetrahedral mesh on FEM C++ library FEMEngine developed by authors. Function which calculates the matrix is generated by higher order functions on compilation time.
Performance of the computation is assessed by comparison with FreeFem++ code and by studying of a disassembled code.
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