Numerical Modelling of Boundary Layers and Far Field Acoustic Propagation in Thermoviscous Fluid

Q1 Arts and Humanities
N. Joly, P. Honzík
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引用次数: 1

Abstract

To model linear acoustics in a thermoviscous fluid in open domain and time-harmonic regime, a Finite Element formulation in a bounded meshed domain is combined with the integral representation of the field for the propagative solution. The integrals are non-singular and involve the only Finite Element node values for temperature variation and particle velocity variables. To overcome the non-uniqueness of solutions at fictitious resonant frequencies, a Burton-Miller combination of integral representation is used. This formulation is suitable to compute acoustic radiation, scattering and diffraction by objects or mutual interaction between transducers. Two-dimensional computational experiments are presented in an infinite, open domain (exterior), showing that the model can be achieved in meshing only a thin domain surrounding the physical boundaries of a device.
热粘性流体边界层及远场声波传播数值模拟
为了在开放域和时谐域中模拟热粘性流体中的线性声学,将有界网格域中的有限元公式与传播解的场的积分表示相结合。积分是非奇异的,只涉及温度变化和粒子速度变量的有限元节点值。为了克服在虚拟谐振频率处解的非唯一性,采用了波顿-米勒组合积分表示。该公式适用于计算物体的声辐射、散射和衍射或换能器之间的相互作用。在无限开放域(外部)中进行了二维计算实验,表明该模型只能在围绕设备物理边界的薄域内实现网格划分。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
0
审稿时长
6.8 months
期刊介绍: Cessation. Acta Acustica united with Acustica (Acta Acust united Ac), was published together with the European Acoustics Association (EAA). It was an international, peer-reviewed journal on acoustics. It published original articles on all subjects in the field of acoustics, such as • General Linear Acoustics, • Nonlinear Acoustics, Macrosonics, • Aeroacoustics, • Atmospheric Sound, • Underwater Sound, • Ultrasonics, • Physical Acoustics, • Structural Acoustics, • Noise Control, • Active Control, • Environmental Noise, • Building Acoustics, • Room Acoustics, • Acoustic Materials and Metamaterials, • Audio Signal Processing and Transducers, • Computational and Numerical Acoustics, • Hearing, Audiology and Psychoacoustics, • Speech, • Musical Acoustics, • Virtual Acoustics, • Auditory Quality of Systems, • Animal Bioacoustics, • History of Acoustics.
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