湍流伴随法在涡轮机械叶栅灵敏度计算和气动设计优化中的评价

IF 5 1区 工程技术 Q1 ENGINEERING, AEROSPACE
Jiaqi Luo , Jiaxing Li , Yao Zheng , Zhonghua Han , Feng Liu
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引用次数: 0

摘要

伴随优化在涡轮机械强湍流叶栅设计优化中的应用面临着灵敏度、精度等方面的挑战。本文采用离散伴随法计算了不同叶栅气动参数的灵敏度,并将其用于叶栅的设计优化。首先介绍了伴随法的原理,描述了用离散伴随法计算灵敏度的步骤。采用湍流伴随法和恒涡粘伴随法分别计算了高压涡轮叶栅和控制扩散压气机叶栅的气动灵敏度。通过与有限差分法灵敏度的比较,证明了湍流伴随法灵敏度计算精度的提高。此外,当压气机叶栅处于非设计状态且湍流加剧时,灵敏度精度得到了较大的提高。最后,对这两种叶栅进行了气动设计优化。结果表明,采用湍流伴随方法可以获得更大的性能改进效果,特别是在非设计工况下压气机叶栅的优化方面。讨论了气动形状优化对叶栅性能变化的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of turbulence adjoint method in sensitivity calculation and aerodynamic design optimization of turbomachinery cascades
Adjoint-based optimization faces the challenges from sensitivity accuracy when applying in design optimization of turbomachinery cascades with strong turbulence flow. In the study, sensitivities of aerodynamic parameters of different cascades are calculated using the discrete adjoint method, which are then used for design optimization of the cascades. The principles of adjoint method are firstly introduced and the procedures of sensitivity calculation using discrete adjoint method are described. Aerodynamic sensitivities of a high-pressure-turbine cascade and a controlled-diffusion compressor cascade are calculated by both the turbulence adjoint and constant-eddy-viscosity (CEV) adjoint methods. Through comparisons against the sensitivities by finite difference method, the improved accuracy in sensitivity calculation by turbulence adjoint method is demonstrated. Moreover, at the off-design condition of the compressor cascade with intensified turbulence flow, more improvements in sensitivity accuracy are gained. Finally, aerodynamic design optimizations of these two cascades are conducted. The results illustrate that more gains in performance improvements can be obtained by turbulence adjoint method, especially in the optimization of compressor cascade at the off-design condition. The impacts of aerodynamic shape optimization on performance variations of the cascades are addressed.
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来源期刊
Aerospace Science and Technology
Aerospace Science and Technology 工程技术-工程:宇航
CiteScore
10.30
自引率
28.60%
发文量
654
审稿时长
54 days
期刊介绍: Aerospace Science and Technology publishes articles of outstanding scientific quality. Each article is reviewed by two referees. The journal welcomes papers from a wide range of countries. This journal publishes original papers, review articles and short communications related to all fields of aerospace research, fundamental and applied, potential applications of which are clearly related to: • The design and the manufacture of aircraft, helicopters, missiles, launchers and satellites • The control of their environment • The study of various systems they are involved in, as supports or as targets. Authors are invited to submit papers on new advances in the following topics to aerospace applications: • Fluid dynamics • Energetics and propulsion • Materials and structures • Flight mechanics • Navigation, guidance and control • Acoustics • Optics • Electromagnetism and radar • Signal and image processing • Information processing • Data fusion • Decision aid • Human behaviour • Robotics and intelligent systems • Complex system engineering. Etc.
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