Influence and Simulation of transformer firewall device on audible noise propagation characteristics

Zhenhuan Liu, Yulong Chen, Rui Huang
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Abstract

The theoretical basis of noise reduction by noise barrier is Huygens Fresnel's wave theory. When a noise barrier is added in the propagation path between the sound source and the receiving point, the reflection, transmission and diffraction of the noise sound wave will occur when it meets the noise barrier in the propagation process. A part of the sound energy is emitted from the sound source and transmitted to the receiving point through the diffraction of the top structure of the sound barrier; A part of the sound energy can reach the sound receiving point directly through the sound barrier; When a part of the energy reaches the sound barrier, it will be reflected. If the two sound barriers are close to each other, it will be reflected many times. The ability of sound insulation and noise reduction of sound barrier is to reduce the energy of direct and transmission to the sound receiving point by blocking, and reduce the energy of diffraction to the sound receiving point through the upper structure, so as to achieve the effect of sound energy attenuation, The influence of firewall geometry on audible noise distribution of transformer is obtained [1].
变压器防火墙装置对可听噪声传播特性的影响及仿真
噪声屏障降噪的理论基础是惠更斯菲涅耳波理论。当在声源和接收点之间的传播路径上加一个隔音屏障时,噪声声波在传播过程中遇到隔音屏障就会发生反射、传播和衍射。一部分声能从声源发射,通过声障顶部结构的衍射传递到接收点;一部分声能可直接通过音障到达声接收点;当一部分能量到达音障时,它将被反射。如果两个音障彼此靠近,则会反射多次。音障的隔声降噪能力是通过阻隔减少直接和传递到声接收点的能量,通过上层结构减少衍射到声接收点的能量,从而达到声能衰减的效果,得到了防火墙几何形状对变压器可听噪声分布的影响[1]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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