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A multi-thread parallel computation method for dynamic simulation of molecular weight distribution of multisite polymerization

机译:动态模拟多中心聚合分子量分布的多线程并行计算方法

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摘要

Molecular weight distribution (MWD) is an important quality index of polymer products. Many methods have been proposed to dynamically simulate the MWD of polymerization, but these methods are normally designed for serial computations. In this paper, a multi-thread parallel computation method was proposed for multisite free-radical polymerization. Analysis of the relationship among different subtasks revealed a combined parallel strategy by fully exploiting the parallel feature of the process. A good performance was obtained to accelerate the dynamic simulation of MWD based on Flory method. We theoretically analyzed the speedup ratio (SR) and parallel efficiency (PE). Results showed that software algorithm and hardware configuration exhibited a good match. The efficiency of the proposed parallel method was presented through industrial slurry processes that used high-density polyethylene (HDPE).
机译:分子量分布(MWD)是聚合物产品的重要质量指标。已经提出了许多方法来动态模拟聚合的MWD,但是这些方法通常是为串行计算而设计的。本文提出了一种用于多位自由基聚合的多线程并行计算方法。通过充分利用流程的并行功能,对不同子任务之间关系的分析揭示了组合的并行策略。在基于Flory方法的MWD动态仿真中,取得了良好的性能。我们从理论上分析了加速比(SR)和并行效率(PE)。结果表明,软件算法和硬件配置具有很好的匹配性。通过使用高密度聚乙烯(HDPE)的工业浆料工艺,提出了所建议的并行方法的效率。

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