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Study on model design and dynamic similitude relations of vibro-acoustic experiment for elastic cavity

机译:弹性腔振动声实验模型设计与动态模拟关系研究

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摘要

Coupling between aero-acoustic noise and structural vibration under high-speed open cavity flow-induced oscillation may bring about severe random vibration of the structure, and even cause structure to fatigue destruction, which threatens the flight safety. Carrying out the research on vibro-acoustic experiments of scaled down model is an effective means to clarify the effects of high-intensity noise of cavity on structural vibration. Therefore, in allusion to the vibro-acoustic experiments of cavity in wind tunnel, taking typical elastic cavity as the research object, dimensional analysis and finite element method were adopted to establish the similitude relations of structural inherent characteristics and dynamics for distorted model, and verifying the proposed similitude relations by means of experiments and numerical simulation. Research shows that, according to the analysis of scale-down model, the established similitude relations can accurately simulate the structural dynamic characteristics of actual model, which provides theoretic guidance for structural design and vibro-acoustic experiments of scaled down elastic cavity model.
机译:高速开腔流动振荡下的航空声噪声和结构振动之间的耦合可能会导致结构的严重随机振动,甚至导致结构疲劳破坏,这威胁到飞行安全。执行缩放模型的振动声学实验的研究是阐明腔高强度噪声对结构振动的有效手段。因此,在风隧道中的腔体的vibro声学实验中,采用典型的弹性腔作为研究对象,采用尺寸分析和有限元方法来建立结构固有特征和变形模型动力学的相似关系,并验证通过实验和数值模拟提出的模拟关系。研究表明,根据缩放模型的分析,建立的类似关系可以准确地模拟实际模型的结构动态特性,为缩小弹性腔模型的结构设计和振动声学实验提供了理论指导。

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