首页> 外文期刊>Journal of Engineering for the Maritime Environment >Vibro-acoustic optimization of an immersed cylindrical structure with a floating-raft system inside by using frequency-response-function-based substructuring sensitivity analysis
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Vibro-acoustic optimization of an immersed cylindrical structure with a floating-raft system inside by using frequency-response-function-based substructuring sensitivity analysis

机译:基于频率响应函数的子结构灵敏度分析,对内部带有浮筏系统的圆柱结构进行振动声学优化

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摘要

Optimization of the vibration transmission of an internal floating-raft system and the resultant sound radiation of the fluid-loaded cylindrical structure is presented. The influences of different objective functions, fluid loading, external loading, and an optimized frequency band on the optimization results are investigated in detail. The frequency-response-function (FRF)-based substructuring method and the coupled finite element method–boundary element method are employed to study the vibration transmission from vibrating machines to the base and the vibro-acoustic behaviour of the fluid-loaded cylindrical structure respectively. An FRF-based substructuring sensitivity analysis is applied to obtain the optimal values of the stiffness of isolators under five objective functions in the low-frequency range. The optimized results demonstrate that some of the objective functions are equivalent to each other and can be replaced by each other. The reasons for the difference in the variation trends of the stiffness of the lower isolators for different objective functions are discussed in detail. The fluid loading does have an impact on the optimal results and it influences the variation trend of only the stiffness of the isolators that support the machines without an externally applied load. The external loading and the optimized frequency band are two factors to be carefully considered in the design stage. This investigation reveals that it should take into account fluid–structure interaction and comprehensively consider different vibration or acoustic objectives in the design stage.
机译:提出了内部浮筏系统的振动传递以及流体加载的圆柱结构的声辐射的优化。详细研究了不同目标函数,流体载荷,外部载荷以及优化频带对优化结果的影响。基于频率响应函数(FRF)的子结构方法和耦合有限元方法-边界元方法分别研究了振动器到振动基座的振动传递以及流体载荷圆柱结构的振动声行为。应用基于FRF的子结构灵敏度分析来获得低频范围下五个目标函数下的隔振器刚度的最佳值。优化结果表明,某些目标函数彼此等效,并且可以相互替换。详细讨论了不同目标函数下隔离器刚度变化趋势差异的原因。流体负载确实会影响最佳结果,并且仅影响支撑机器而没有外部负载的隔离器刚度的变化趋势。外部负载和优化的频带是设计阶段要仔细考虑的两个因素。这项调查表明,在设计阶段应考虑流体与结构的相互作用,并综合考虑不同的振动或声学目标。

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    State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai, People’s Republic of China;

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