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Efficient computational techniques for mistuning analysis of bladed discs: A review

机译:叶片盘误分析的高效计算技术:综述

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This paper describes a review of the relevant literature about mistuning problems in bladed disc systems, and their implications for the uncertainty propagation associated to the dynamics of aeroengine systems. An emphasis of the review is placed on the developments of the multi-scale computational techniques to increase the computational efficiency for the linear mistuning analysis, especially with the respect to the reduced order modeling techniques and uncertainty quantification methods. The non-linearity phenomena are not considered in this paper. The first two parts describe the fundamentals of the mechanics of tuned and mistuned bladed discs, followed by a review of critical research efforts performed on the development of reduced order rotor models. The focus of the fourth part is on the review of efficient simulation methods for the stochastic analysis of mistuned bladed disc systems. After that, we will finally provide a view of the current state of the art associated to efficient inversion methods for the stochastic analysis, followed by a summary.
机译:本文介绍了有关叶片盘式系统中失速问题的相关文献的综述,以及它们对与航空发动机系统动力学相关的不确定性传播的影响。审查的重点放在多尺度计算技术的发展上,以提高线性模糊分析的计算效率,特别是在降阶建模技术和不确定性量化方法方面。本文不考虑非线性现象。前两个部分描述了调优和错位的叶片盘的力学原理,随后回顾了在开发降阶转子模型方面进行的关键研究工作。第四部分的重点是对雾化叶片系统随机分析的有效仿真方法的综述。之后,我们将最终概述与用于随机分析的有效反演方法相关的最新技术,然后进行总结。

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