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PERFORMANCE EVALUATION OF DIRECT ALGORITHM IN PARALLEL OPTIMIZATION FOR A THERMOHYDRODYNAMIC LUBRICATION ANALYSIS

机译:热流力学润滑分析并行优化直接算法的性能评价

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In this study the optimization is illustrated by maximizing the load-carrying capacity of a slider bearing represented by a thermohydrodynamic lubrication model. An efficient optimization scheme, DIviding RECTangles (DIRECT), is coded for parallel computing in a single-system image cluster. The main focus of this study was to examine the performance of the standard DIRECT algorithm in coarse-grained parallelism. The parallel efficiency is compared with the results obtained in recent studies of air bearing optimization by using a genetic algorithm and a divide-and-conquer scheme. It was found that the limited possibility for parallelism of the standard DIRECT algorithm contributes somewhat small parallel efficiency.
机译:在该研究中,通过最大化由热流体动力润滑模型表示的滑块轴承的承载的承载能力来说明优化。有效优化方案,划分矩形(直接),用于在单系统映像簇中进行并行计算。本研究的主要重点是在粗粒粒度平行中检验标准直接算法的性能。将平行效率与最近通过使用遗传算法和剥离和征服方案进行空气轴承优化的研究结果进行比较。结果发现,标准直接算法的平行性有限的可能性有所小的并行效率。

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