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Suppression of low frequency sound transmission in fluid-filled pipe systems through installation of an anechoic node array

机译:通过安装一个AneChoic节点阵列抑制流体填充管道系统中的低频声传输

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To provide low frequency noise control in the fluid-filled pipe systems of ships, a periodic waveguide made of an array of expansionary mufflers (referred to as anechoic nodes) installed axially on a pipe is proposed. Broad and low frequency acoustic band gaps can be generated with this periodic pipe system from the destructive interference of reflected, transmitted, and incident waves at the muffler installation nodes, and will be reinforced over some desired low frequency ranges. Within the band gaps, the transmission of acoustic noise inside the internal media of the periodic pipe system will be effectively attenuated. Key parameters for modulating the central frequency, bandwidth, and attenuation coefficient of the band gaps include the lattice constant, expansion ratio, and muffler length, and these factors are investigated following analysis of the formation mechanism of the band gaps. The results obtained in this study suggest that the introduction of a muffler array to form a periodic structure in the piping system can suppress the propagation of acoustic waves with longer wavelengths, thus achieving control of lower frequency pipe noises.
机译:为了在船舶的流体填充管道系统中提供低频噪声控制,提出了一种周期性的波导,由轴向安装在管道上的扩展消声器(称为AneChoice)阵列制成的周期性波导。可以利用该周期性管道系统从消声器安装节点处的反射,传输和入射波的破坏性干扰产生宽和低频声带间隙,并且将在一些所需的低频范围内加强。在带间隙内,将有效地减弱周期性管道系统的内部介质内部介质内的声噪声的传输。用于调制带间隙的中央频率,带宽和衰减系数的关键参数包括晶格常数,膨胀比和消声器长度,并且在分析带间隙的形成机制之后研究了这些因素。本研究中获得的结果表明,引入消声器阵列以在管道系统中形成周期性结构,可以抑制声波具有较长波长的声波,从而实现了对较低频率管道噪声的控制。

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