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Investigation of performance of programming approaches and languages used for numerical simulation of granular material by the discrete element method

机译:用离散元方法研究颗粒材料数值模拟的编程方法和语言的性能

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摘要

Performance of programming approaches and languages used for the development of software codes for numerical simulation of granular material dynamics by the discrete element method (DEM) is investigated. The granular material considered represents a space filled with discrete spherical visco-elastic particles, and the behaviour of material under imposed conditions is simulated using the DEM. The object-oriented programming approach (implemented via C++) was compared with the procedural approach (using FORTRAN 90 and OBJECT PASCAL) in order to test their efficiency. The identical neighbour-searching algorithm, contact forces model and time integration method were implemented in all versions of codes.
机译:研究了通过离散元素方法(DEM)开发用于颗粒材料动力学数值模拟的软件代码的编程方法和语言的性能。所考虑的粒状材料代表由离散的球形粘弹性颗粒填充的空间,并且使用DEM模拟了施加条件下材料的行为。为了测试它们的效率,将面向对象的编程方法(通过C ++实现)与过程方法(使用FORTRAN 90和OBJECT PASCAL)进行了比较。所有版本的代码都实现了相同的邻居搜索算法,接触力模型和时间积分方法。

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