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Investigations on Wave Propagation of the Pressure Pulsation in a Helmholtz-Type Hydraulic Silencer With a Hemispherical Vessel

机译:带有半球形容器的亥姆霍兹型液压消声器中压力脉动的波传播研究

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摘要

The Helmholtz-type hydraulic silencer is one of the most practical silencers for attenuating pressure pulsations in hydraulic systems owing to its simple structure and reasonable cost. Maximum attenuation performance can be attained at the resonance frequency in accordance with the principle of Helmholtz resonance. Therefore, it is extremely important to precisely determine the resonance frequency at the design stage. It was clarified in our previous study that the shape of the volume vessel affects the resonance frequency of the silencer because of the wave propagation of pressure pulsation inside the volume vessel. In this study, the attenuation characteristics and wave propagation in a silencer with a hemispherical vessel are investigated. A mathematical model that takes into account the propagation of a one-dimensional wave in the radial direction of the hemispherical vessel is proposed and compared with the step section approximation model and the classic lumped parameter model. Furthermore, the effectiveness of the theoretical analysis is verified by experiments wherein the dimensional specifications of the vessel and neck are adjusted.
机译:亥姆霍兹型液压消音器由于其结构简单且价格合理,是用于减轻液压系统中压力脉动的最实用的消音器之一。根据亥姆霍兹共振原理,可以在共振频率处获得最大的衰减性能。因此,在设计阶段精确确定谐振频率非常重要。在我们先前的研究中已经阐明,由于压力脉动在容器内的传播,因此容器的形状会影响消音器的共振频率。在这项研究中,研究了具有半球形容器的消声器的衰减特性和波传播。提出了一种考虑一维波在半球血管径向上传播的数学模型,并将其与阶梯截面近似模型和经典集总参数模型进行了比较。此外,通过对血管和颈部的尺寸规格进行调整的实验来验证理论分析的有效性。

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  • 来源
    《Journal of Vibration and Acoustics》 |2017年第1期|011003.1-011003.8|共8页
  • 作者单位

    Department of Mechanical Systems Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

    Graduate School of Science and Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

    Department of Mechanical Systems Engineering, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

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