典型文献
Extendible and Efficient Python Framework for Solving Evolution Equations with Stabilized Discontinuous Galerkin Methods
文献摘要:
This paper discusses a Python interface for the recently published DUNE-FEM-DG mod-ule which provides highly efficient implementations of the discontinuous Galerkin(DG)method for solving a wide range of nonlinear partial differential equations(PDEs).Although the C++interfaces of DUNE-FEM-DG are highly flexible and customizable,a solid knowledge of C++is necessary to make use of this powerful tool.With this work,easier user interfaces based on Python and the unified form language are provided to open DUNE-FEM-DG for a broader audience.The Python interfaces are demonstrated for both parabolic and first-order hyperbolic PDEs.
文献关键词:
中图分类号:
作者姓名:
Andreas Dedner;Robert Kl?fkorn
作者机构:
University of Warwick,Coventry CV4 7AL,UK;Lund University,Box 118,22100 Lund,Sweden
文献出处:
引用格式:
[1]Andreas Dedner;Robert Kl?fkorn-.Extendible and Efficient Python Framework for Solving Evolution Equations with Stabilized Discontinuous Galerkin Methods)[J].应用数学与计算数学学报,2022(02):657-696
A类:
Extendible,DUNE,C++interfaces,C++is
B类:
Efficient,Python,Framework,Solving,Evolution,Equations,Stabilized,Discontinuous,Galerkin,Methods,This,paper,discusses,recently,published,FEM,DG,mod,ule,which,provides,highly,efficient,implementations,discontinuous,method,solving,wide,range,nonlinear,partial,differential,equations,PDEs,Although,are,flexible,customizable,solid,knowledge,necessary,make,this,powerful,tool,With,easier,user,unified,form,language,provided,open,broader,audience,demonstrated,both,parabolic,first,order,hyperbolic
AB值:
0.612126
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