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Parallel intelligent algorithm analysis of optimization arrangement on mistuned blades based on compute unified device architecture

机译:基于计算统一设备架构的雾化刀片优化配置并行智能算法分析

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This paper sets up a parameterized model of engine-bladed disk system. Then a method of mistuned parameter identification is proposed, which consists of static frequency test of blades, dichotomy, and finite element analysis. Dynamic genetic ant colony optimization combined algorithm is presented which is used as a bladed arrangement optimization method. It combines the advantage of ant colony algorithm and genetic algorithm. By this way, the local and global search ability is introduced and the disadvantage of a single algorithm is overcome. The improved parallel algorithm comes up with graphics processing unit based on compute unified device architecture and its performance is analyzed. The results show that using optimization results can reduce the amplitude and localization of forced vibration response of bladed-disk system. At the same time, optimization based on compute unified device architecture framework can improve computing speed. Providing support for engineering application in terms of effectiveness and efficiency.
机译:本文建立了发动机叶片磁盘系统的参数化模型。然后提出了一种误参数识别的方法,该方法包括叶片静态频率测试,二分法和有限元分析。提出了一种动态遗传蚁群优化组合算法,作为叶片优化配置方法。它结合了蚁群算法和遗传算法的优点。通过这种方式,引入了局部和全局搜索能力,克服了单一算法的缺点。改进的并行算法是基于计算统一设备体系结构的图形处理单元,并对其性能进行了分析。结果表明,使用优化结果可以减小刀片磁盘系统强制振动响应的幅度和局部性。同时,基于计算统一设备架构框架的优化可以提高计算速度。在有效性和效率方面为工程应用提供支持。

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