Investigations into the Approaches of Computational Fluid Dynamics for Flow-Excited Resonator Helmholtz Modeling within Verification on a Laboratory Benchmark

Acoustics Pub Date : 2023-12-22 DOI:10.3390/acoustics6010002
D.A. Sergeev, Irina V’yushkina, Vladimir Eremeev, Andrei Stulenkov, Kirill Pyalov
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Abstract

This paper presents the results of a study of self-sustained processes excited in a Helmholtz resonator after a flow over its orifice. A comparative analysis of various approaches to the numerical modeling of this problem was carried out, taking into account both the requirements for achieving the required accuracy and taking into account the resource greediness of calculations, the results of which were verified by comparison with data obtained during a special experiment. The configuration with a spherical resonator with a natural frequency of 260 Hz and an orifice diameter (about 5 cm) in an air flow with a speed of 6 to 14 m/s was considered. A comparison of the calculation results with data obtained in experiments carried out in the wind tunnel demonstrated that the accuracy of calculations of the characteristics of the self-sustained mode using the simplest URANS class model tends to the accuracy of calculations within the large eddy simulation approach formulated in the WMLES model. At the same time, when using WMLES, it is possible to better reproduce the background level of pulsations. From the point of view of resource greediness, expressed in the number of core hours spent obtaining a solution, both models of the turbulence turned out to be almost equivalent when using the same grid models.
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在实验室基准验证范围内对用于流激谐振器亥姆霍兹建模的计算流体力学方法的研究
本文介绍了对亥姆霍兹谐振器在流经孔口后激发的自持过程的研究结果。本文对该问题的各种数值建模方法进行了比较分析,既考虑到了达到所需精度的要求,也考虑到了计算资源的贪婪性,其结果通过与特殊实验中获得的数据进行比较得到了验证。考虑了球形谐振器的配置,其固有频率为 260 赫兹,孔径约为 5 厘米,气流速度为 6 至 14 米/秒。将计算结果与风洞实验数据进行比较后发现,使用最简单的 URANS 类模型计算自持模式特性的精确度与 WMLES 模型中大涡模拟方法的精确度相当。同时,在使用 WMLES 时,可以更好地再现脉动的背景水平。从资源贪婪的角度来看,即以获得一个解决方案所花费的核心小时数来表示,当使用相同的网格模型时,这两种湍流模型几乎是等价的。
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