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Development of the GranOO discrete element platform for dynamic problems : application for tribological application

机译:动态问题Granoo离散元素平台的开发:摩擦学应用的应用

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Discrete Model is based on the description of the physical state (velocity, position, temperature, magnetic moment, electric potential..) of a large number of discrete elements that form the media to be studied. It is not basedon a continuous description of the media.Thus, it is particularly well adapted to describe media evolution driven by discontinuous phenomena like the description of multi fracturation followed by debris flow like wear studyRecently, the use of discrete model has been widened to face problem encountered with complex rheological behavior and/or multi-physical behavior. Multi-physical problems face complex mathematical formulation because of the mixing of different families of differential equations when continuous approach is chosen. With the discrete model, each particle has a physical state and state evolution is due to local physical particle interaction: it is often much simple to write. From the beginning of the years 2000, this method has been widely applied for the study of tribological problems. Wear has been investigated[l], thermo-mechanical behavior of a contact[2], subsurface damage due to surface polishing[4]... Recently, it has been shownhow quantitative results can be obtained with this method[4]. To help and promote research in this area, a platform GranOO has been developed under a C++ environment and is distributed under thefree GPL license.The goal of this platform is to offer to researchers, especially in the tribology domain, a numerical and easy to use environment to facilitate the access to Discrete Element simulations.The main aspect of this platform ispresented in the extended abstract and some applicationsgiven as examples. Details can be found on url.
机译:离散模型基于大量形成介质的大量离散元件的物理状态(速度,位置,温度,磁矩,电势,电位。它不仅仅是介质的连续描述.Thus,它特别适合描述通过不连续现象驱动的媒体演化,如多骨质的描述,然后像磨损一样磨损,使用离散模型已经扩大到面部遇到复杂的流变行为和/或多物理行为的问题。多物理问题面对复杂的数学制剂,因为选择连续方法时不同的微分方程的混合。利用离散模型,每个粒子具有物理状态,状态进化是由于局部物理粒子相互作用:写入通常很简单。从2000年初开始,这种方法已被广泛应用于摩擦学问题的研究。磨损已经研究了[L],接触的热力学行为[2],由于表面抛光引起的地下损伤[4],最近,已经显示了该方法可以获得定量结果[4]。为了帮助和促进该领域的研究,在C ++环境下开发了一个平台Granoo,并在Free GPL许可证下分发。该平台的目标是向研究人员提供帮助,特别是在摩擦学领域,一个数字且易于使用环境为了方便访问离散元素模拟。该平台的主要方面在扩展的摘要中呈现,以及一些应用程序作为示例。可以在URL上找到详细信息。

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