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Nonlinear multiphysics finite element code architecture in object oriented Fortran environment

机译:面向对象的Fortran环境中的非线性多物理场有限元代码体系结构

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The objective of the present manuscript is to describe a new architecture of the nonlinear multiphysics Finite element code in object oriented Fortran environment hereafter referred to as FOOF. The salient features of FOOF are reusability, extensibility, and performance. Computational efficiency stems from the intrinsic optimization of numerical computing intrinsic to Fortran, while reusability and extensibility is inherited from the support of object-oriented programming style in Fortran 2003 and its later versions. The shortcomings of the object oriented style in Fortran 2003 (in comparison to C+ +) are alleviated by introducing the class hierarchy and by utilizing a multilevel programming style. (C) 2015 Elsevier B.V. All rights reserved.
机译:本手稿的目的是描述面向对象的Fortran环境中的非线性多物理场有限元代码的新架构,以下称为FOOF。 FOOF的显着特征是可重用性,可扩展性和性能。计算效率源于Fortran固有的数值计算的内在优化,而可重用性和可扩展性继承自Fortran 2003及其更高版本中的面向对象编程风格的支持。通过引入类层次结构并利用多级编程样式,可以减轻Fortran 2003中面向对象样式的缺点(与C ++相比)。 (C)2015 Elsevier B.V.保留所有权利。

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