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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Estimation of turbulent boundary layer induced noise using energy flow analysis for ship hull designs
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Estimation of turbulent boundary layer induced noise using energy flow analysis for ship hull designs

机译:船舶船体设计能量流分析探测湍流边界层诱导噪声

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摘要

A turbulent boundary layer develops on the surface of submerged bodies in motion; these layers consist of complex flows and interact with the structure causing turbulent boundary layer induced noise due to fluid-structure interaction. Recently, although the research on such noise has attracted great interest in the naval fields, owing to the focus on the competitive development of low-noise naval ships, the limitations corresponding to the application of methods developed in aeroacoustics for underwater structures having lower convection speed of turbulence and faster sound speed along with insufficient environments to conduct experiments restrained to subjects of simple structures at high frequency. To overcome the abovementioned limitations and study the noise characteristics for ship hull design, in this research, methods to analyze the noise radiated due to turbulent flow on the complex underwater structure are developed using energy flow analysis methods for vibro-acoustic calculations. For estimation of the input hydrodynamic forces, wall pressure fluctuation spectrum on the surface is obtained from turbulent boundary layer properties to acquire sufficient resolutions. The vibrational response of the structure is calculated using energy flow analysis incorporating the finite element method for structural forces estimated as input power. The acoustical response coupled with the vibrational response is obtained using the calculated vibrational energy density with the boundary element method in combination with the energy flow analysis, taking advantages of the fact that the methods share the common energy variables. Developed methods are validated with a case of broadband noise radiated from a plate. Using the procedures, numerical estimation and analysis of acoustic performance are performed for trimaran ship hull designs with steady-state computational fluid dynamics to demonstrate the method's usability as an assessment tool in the early design stage.
机译:湍流边界层在运动中浸没体的表面产生;这些层由复杂的流量组成并与引起湍流边界层引起的结构相互作用,由于流体结构相互作用。最近,虽然对这种噪音的研究引起了对海军领域的极大兴趣,但由于重点关注低噪声海军船舶的竞争发展,对应于具有较低对流速度的水下结构中开发的方法的应用对应的限制湍流和更快的声速以及环境不足的环境,以在高频下抑制到简单结构的受试者的实验。为了克服上述限制并研究船体设计的噪声特性,在本研究中,使用用于振动声学计算的能量流分析方法,开发了分析湍流辐射由于湍流的噪声的方法。为了估计输入流体动力学力,表面上的壁压波动光谱从湍流边界层的特性获得以获取足够的分辨率。使用能量流分析来计算结构的振动响应,该能量流量分析包括用于估计为输入功率的结构力的有限元方法。使用与能量流分析结合的计算的振动能量密度,利用与能量流分析结合使用的振动能量密度来获得与振动响应耦合的声学响应,从而实现了该方法共享公共能量变量的事实。开发的方法通过从板辐射的宽带噪声的情况进行了验证。使用具有稳态计算流体动力学的Timaran船船体设计执行了语言性能的程序,数值估计和分析,以证明该方法在早期设计阶段中的评估工具的可用性。

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