首页> 外文会议>Third International Conference on Vector and Parallel Processing - VECPAR'98 Porto, Portugal, June 21-23, 1998 >High Performance Computing of an Industrial Problem in Tribology (Best Student Paper Award: First Prize)
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High Performance Computing of an Industrial Problem in Tribology (Best Student Paper Award: First Prize)

机译:摩擦学中的工业问题的高性能计算(最佳学生论文奖:一等奖)

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In this work we present the vectorisation of a new complex numerical algorithm to simulate the lubricant behaviour in an industrial device issued from tribology. This real technological problem leads to the mathematical model of the thin film displacement of a fluid between a rigid plane and an elastic and loaded sphere. The mathematical study and a numerical algorithm to solve the model has been proposed in the previous work. This numerical algorithm mainly combines fixed point techniques, finite elements and duality methods. Nevertheless, in order to obtain a more accurate approach of different real magnitudes, it is interesting to be able to handle finer meshes. As it is well-known in finite element methods, mesh refinement carries out a great increase in the storage cost and the execution time of the algorithm. It is precisely this computational cost problem what has motivated the authors to try to increase the performance of the numerical algorithm by using high performance computing techniques. In this work we mainly apply vectorisation techniques but also we present some preliminary partial results from the design of a parallel version of the algorithm.
机译:在这项工作中,我们介绍了一种新的复杂数值算法的向量化,以模拟由摩擦学产生的工业设备中的润滑剂行为。这个真正的技术问题导致了流体在刚性平面与弹性和负载球体之间的薄膜位移的数学模型。在先前的工作中已经提出了数学研究和求解该模型的数值算法。该数值算法主要结合了定点技术,有限元和对偶方法。但是,为了获得更精确的不同实际大小的方法,能够处理更细的网格是很有趣的。如在有限元方法中众所周知的那样,网格细化大大增加了算法的存储成本和执行时间。正是这个计算成本问题促使作者尝试通过使用高性能计算技术来提高数值算法的性能。在这项工作中,我们主要应用矢量化技术,但是从并行算法的设计中我们也给出了一些初步的部分结果。

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