首页> 外文会议>ASME (American Society of Mechanical Engineers) Turbo Expo 2002: Turbomachinery >APPLICATION OF REDUCED-ORDER AERODYNAMIC MODELING TO THE ANALYSIS OF STRUCTURAL UNCERTAINTY IN BLADED DISKS
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APPLICATION OF REDUCED-ORDER AERODYNAMIC MODELING TO THE ANALYSIS OF STRUCTURAL UNCERTAINTY IN BLADED DISKS

机译:降阶气动模型在叶片几何不确定度分析中的应用

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Blade-to-blade variations can significantly impact the operation of bladed disks. In this paper, a method is presented for assessing the effects of these variations using a high-fidelity aerodynamic analysis. Systematic model reduction is applied to a high-order computational fluid dynamics code using the proper orthogonal decomposition technique. This results in a low-order model suitable for time domain computations of mistuning effects. The model is shown to capture the dynamics of the aeroe-lastic system more accurately than with a traditional influence coefficient approach. Results are presented for a bladed disk with structural uncertainty, where the blade frequencies exhibit random variations about a nominal state. Finally, the concept of a robust design is explored, in which intentional variation is introduced to the system in an attempt to alleviate the ill-effects of random variations. The approach can also be extended to consider aerodynamic uncertainty, which may arise from geometric variations.
机译:刀片到刀片的变化会严重影响刀片式磁盘的运行。在本文中,提出了一种使用高保真空气动力学分析评估这些变化的影响的方法。使用适当的正交分解技术将系统模型归约应用于高阶计算流体动力学代码。这导致适用于时域计算模糊效应的低阶模型。与传统的影响系数方法相比,该模型可以更精确地捕获气动-弹性系统的动力学。给出了具有结构不确定性的刀片式磁盘的结果,其中刀片频率在标称状态附近表现出随机变化。最后,探讨了稳健设计的概念,其中将有意的变化引入系统,以减轻随机变化的不良影响。该方法还可以扩展为考虑可能由于几何变化而引起的空气动力学不确定性。

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