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Design Space Exploration of Rotor Blades Accounting for Vibratory Responses by Indirect Emulation

机译:间接仿真设计转子叶片占振动反应的设计空间探索

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摘要

Turbomachines are an integral part of society, with global trends demanding more efficient designs while staying within structural limits. Fan blade designs must be designed for both steady and vibratory structural responses. Design space exploration (DSE) of turbomachin-ery blades allows improved designs to be found. DSE requires samples of vibratory responses. Traditionally, analysis to obtain these samples is too computationally expensive for thorough DSE. This work develops a simplified analysis method based on Reynolds-averaged Navier-Stokes (RANS) computational fluid dynamics (CFD) and harmonic mode superposition (HMS) finite element analysis (FEA). This reduces the computational cost and allows for enough samples to create surrogate models. This work also develops a surrogate method which indirectly emulates the vibratory responses to accurately handle the large spikes in vibratory stress found throughout the design space. It was found that combining these methods allows for accurate emulation of a fan blade design space while accounting for vibratory stress. The surrogates with improved accuracy allow better designs to be found while ensuring that those designs meet structural requirements.
机译:涡轮机是社会中不可或缺的一部分,具有全球趋势,要求在结构范围内保持更有效的设计。必须设计风扇刀片设计,用于稳定和振动结构反应。设计空间探索(DSE)的涡轮机 - 射门刀片允许找到改进的设计。 DSE需要振动反应样本。传统上,分析以获得这些样品对于彻底的DSE来说太昂贵。这项工作开发了一种基于Reynolds-Iveriged Navier-Stokes(RANS)计算流体动力学(CFD)和谐波模式叠加(HMS)有限元分析(FEA)的简化分析方法。这降低了计算成本,并允许足够的样本来创建代理模型。这项工作还开发了一种替代方法,它间接地模拟了振动反应,以准确处理在整个设计空间中发现的振动压力中的大型尖峰。发现这些方法组合允许准确地仿真风扇叶片设计空间,同时占振动应力。具有改进精度的代理可以在确保这些设计满足结构要求时找到更好的设计。

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