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A Reduced-Order Meshless Energy Model for the Vibrations of Mistimed Bladed Disks-Part Ⅱ: Finite Element Benchmark Comparisons

机译:错时叶片盘振动的降阶无网格能量模型-第二部分:有限元基准比较

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摘要

This paper draws upon the theoretical basis and applicability of the three-dimensional (3-D) reduced-order spectral-based "meshless" energy technology presented in a companion paper (McGee et al., 2013, "A Reduced-Order Meshless Energy Model for the Vibrations of Mistimed Bladed Disks- Part Ⅰ: Theoretical Basis," ASME J. Turbomach., to be published) to predict free and forced responses of bladed disks comprised of randomly mistuned blades integrally attached to a flexible disk. The 3-D reduced-order spectral-based model employed is an alternative choice in the computational modeling landscape of bladed disks, such as conventionally-used finite element methods and component mode synthesis techniques, and even emerging element-free Hamiltonian- Galerkin, Petrov-Galerkin, boundary integral, and kernel-particle methods. This is because continuum-based modeling of a full disk annulus of mistuned blades is, at present, a steep task using these latter approaches for modal-type mistuning and/or rogue blade failure analysis. Hence, a considerably simplified and idealized bladed disk of 20 randomly mistuned blades mounted to a flexible disk was created and modeled not only to analyze its free and forced 3-D responses, but also to compare the predictive capability of the present reduced-order spectral-based "meshless" technology to general-purpose finite element procedures widely-used in industry practice. To benchmark future development of reduced-order technologies of turbomachinery mechanics analysts may use the present 3-D findings of the idealized 20-bladed disk as a new standard test model. Application of the 3-D reduced-order spectral-based "meshless" technology to an industry integrally-bladed rotor, having all of its blades modally mistuned, is also offered, where reasonably sufficient upper-bounds on the exact free and forced 3-D responses are predicted. These predictions expound new solutions of 3-D vibration effects of modal mistuning strength and pattern, interblade mechanical coupling, and localized modes on the free and forced response amplitudes.
机译:本文借鉴了随附论文中提出的基于三维(3-D)降阶光谱的“无网格”能源技术的理论基础和适用性(McGee等人,2013,“降阶无网格能量”误定时刀片式磁盘的振动模型-第一部分:理论基础,“ ASME J. Turbomach。”(即将出版),用于预测刀片式磁盘的自由响应和强制响应,该刀片式磁盘由整体固定在软盘上的随机雾化刀片组成。在刀片磁盘的计算建模领域中,采用3-D降阶基于光谱的模型是替代选择,例如常规使用的有限元方法和组件模式合成技术,甚至是新兴的无元素Hamiltonian-Galerkin,Petrov -Galerkin,边界积分和核粒子方法。这是因为,目前,基于连续介质的雾化叶片全盘环空建模是一项艰巨的任务,使用后一种方法进行模态雾化和/或流氓叶片故障分析。因此,创建并建模了一个相当简化和理想化的刀片磁盘,该刀片磁盘包含安装在软盘上的20个随机打乱的刀片,不仅可以对其自由和强制3-D响应进行分析,而且还可以比较当前降阶频谱的预测能力基于“无网格”技术的通用有限元程序在工业实践中得到广泛使用。为了对涡轮机械力学降阶技术的未来发展进行基准测试,分析人员可以将理想化的20叶片磁盘的当前3-D研究结果用作新的标准测试模型。还提供了将3-D降阶基于频谱的“无网格”技术应用于工业整体叶片式转子的技术,该叶片的所有叶片均模态微调,其中精确的自由和强制3的合理上限足够大。预测D响应。这些预测阐明了模态失谐强度和模式,叶片间机械耦合以及自由和强迫响应幅度上的局部模式的3-D振动效应的新解决方案。

著录项

  • 来源
    《Journal of turbomachinery》 |2013年第6期|061002.1-061002.26|共26页
  • 作者单位

    Postdoctoral Research Associate;

    Howard University, Washington, DC 20059;

    Senior Fellow Pratt and Whitney Rocketdyne, West Palm Beach, FL 33401;

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