Effect of Support Stiffness Nonlinearity on the Low-Frequency Vibro-Acoustic Characteristics for a Mechanical Equipment—Floating Raft—Underwater Cylindrical Shell Coupled System

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-09-21 DOI:10.3390/inventions8050118
Likang Wang, Rui Huo
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Abstract

The low-frequency vibro-acoustic characteristics of a mechanical equipment—floating raft—cylindrical shell—underwater acoustic field coupled system with nonlinear supports are studied in this paper. Firstly, the state space equations were established by a modal superposition theory for the coupled system, and a modal parameter identification method was deduced and verified for the cylindrical shell—underwater acoustic field coupled subsystem. On this basis, the formulas were derived for transmitted power flow in the coupled system, and the nonlinear stiffness constitutive relation of the vibration isolation supports was expressed by softening and hardening characteristics. Finally, dynamic simulations were carried out by the Runge—Kutta method to analyze the effect of nonlinear stiffness characteristic parameters on the low-frequency vibration modes and vibro-acoustic transfer characteristics in the coupled system. The research shows that a superharmonic phenomenon is common in the steady vibration mode of the coupled system with a nonlinear softening (or hardening) stiffness characteristic under harmonic excitation. The stronger the softening (or hardening) stiffness characteristic is, the more complex the vibration form is, and the smaller (or larger) the low-frequency vibro-acoustic transfer level in resonance regions is.
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支撑刚度非线性对机械设备-浮筏-水下圆柱壳耦合系统低频振声特性的影响
研究了具有非线性支撑的机械设备-浮筏-圆柱壳-水声耦合系统的低频振动声特性。首先,利用模态叠加理论建立了耦合系统的状态空间方程,推导并验证了圆柱壳-水声耦合子系统的模态参数辨识方法。在此基础上,推导了耦合系统中传输潮流的计算公式,并用软化和硬化特性表示隔振支座的非线性刚度本构关系。最后,采用龙格-库塔法进行了动力学仿真,分析了非线性刚度特性参数对耦合系统低频振动模态和振声传递特性的影响。研究表明,在谐波激励下,具有非线性软化(或硬化)刚度特性的耦合系统在稳态振动模式中普遍存在超谐波现象。软化(或硬化)刚度特性越强,振动形式越复杂,共振区低频振声传递能级越小(或越大)。
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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