基于 CFD/VVPM 混合方法的刚性同轴转子正向飞行气声特性分析

IF 2.1 3区 工程技术 Q2 ENGINEERING, AEROSPACE Aerospace Pub Date : 2023-12-26 DOI:10.3390/aerospace11010021
Yucheng Yang, Guohua Xu, Yongjie Shi, Zhiyuan Hu
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引用次数: 0

摘要

为了研究同轴刚性旋翼的气动和声学特性,本研究开发了一种混合求解器,该求解器采用了反向过置装配技术(ROAT)、粘性涡流粒子法(VVPM)和基于 URNS 方法的 CFD 程序。首先根据混合方法计算了 "AH-1G "直升机旋翼的气动载荷,并与现有实验数据进行了比较。然后对 OLS 旋翼的线性噪声进行预测,并将所得结果与现有实验数据进行比较。这些结果有助于评估混合方法在模拟转子空气动力学和声学方面的准确性。随后,应用混合方法和 CFD 方法获得了给定同轴刚性转子模型的气动和声学特性,同时考虑了集体俯仰的修剪。结果表明,混合方法在捕捉叶片-涡流-相互作用冲击载荷方面具有很高的准确性,在预测相关载荷噪声特性方面具有很高的计算效率。此外,还分析了混合方法在不同进动比、叶尖速度、轴角度等条件下对同轴刚性转子噪声特性的影响,以及上下转子对同轴转子噪声贡献的影响。最后,研究了初始阶段和垂直间距对声压级的影响。
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Analysis of the Aeroacoustic Characteristics of a Rigid Coaxial Rotor in Forward Flight Based on the CFD/VVPM Hybrid Method
This study develops a hybrid solver with reversed overset assembly technology (ROAT), a viscous vortex particle method (VVPM), and a CFD program based on the URNS method, in order to study the aerodynamic and acoustic characteristics of coaxial rigid rotors. The aerodynamic load of the “AH-1G” helicopter rotor is first calculated based on the hybrid method and compared with available experimental data. The prediction of the linear noise of the OLS rotor is then performed and the obtained results are compared with available experimental data. These results allow the evaluation of the accuracy of the hybrid method for emulating rotor aerodynamics and acoustics. Afterwards, the hybrid and CFD methods are applied to obtain the aerodynamic and acoustic characteristics of the given coaxial rigid rotor model, while taking into account the trim of the collective pitch. The obtained results demonstrate that the hybrid method has high proficiency in capturing blade–vortex-interaction impulsive loads and high computational efficiency in predicting associated loading noise characteristics. Furthermore, the effect of the hybrid method on the noise characteristics of coaxial rigid rotors under a different advance ratio, blade tip speed, shaft angle, and other conditions, as well as the impact of the upper and lower rotors on the noise contribution of the coaxial rotor are analyzed. Finally, the impacts of the initial phase and the vertical spacing on the sound pressure level are studied.
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来源期刊
Aerospace
Aerospace ENGINEERING, AEROSPACE-
CiteScore
3.40
自引率
23.10%
发文量
661
审稿时长
6 weeks
期刊介绍: Aerospace is a multidisciplinary science inviting submissions on, but not limited to, the following subject areas: aerodynamics computational fluid dynamics fluid-structure interaction flight mechanics plasmas research instrumentation test facilities environment material science structural analysis thermophysics and heat transfer thermal-structure interaction aeroacoustics optics electromagnetism and radar propulsion power generation and conversion fuels and propellants combustion multidisciplinary design optimization software engineering data analysis signal and image processing artificial intelligence aerospace vehicles'' operation, control and maintenance risk and reliability human factors human-automation interaction airline operations and management air traffic management airport design meteorology space exploration multi-physics interaction.
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