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Indoor substation low-noise design and sound absorbing structure improvement considering power transformer acoustic radiation characteristics

机译:考虑电力变压器声辐射特性的室内变电站低噪声设计和吸声结构改进

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摘要

To decrease the influence of indoor substation noise originating from power transformers in the surrounding soundscape, an improved indoor substation low-noise design procedure was proposed and demonstrated in this study. According to the new design procedure, acoustic radiation characteristics analyses were conducted to quantify and visualize the external sound field of a power transformer. The interdepartmental and intradepartmental feedback was then summarized from the indoor substation noise radiation level measurements. Finally, these acoustic radiation characteristics analysis results and feedback were applied to the low-noise indoor substation redesign in both the integrated layout modifications and sound absorbing structure improvements to decrease the sound pressure levels at the noise sensitive area boundaries. The comparative analysis results verified that, on the premise of land cost neutrality, the modified layout and sound absorbing structure could limit the substation noise impact on the surrounding soundscape, and the mean value of the maximum sound pressure levels at the noise sensitive area boundaries were 6.6 dBA smaller than before.
机译:为了减少源自变电站的室内变电站噪声对周围声景的影响,提出并改进了室内变电站的低噪声设计程序并进行了演示。根据新的设计程序,进行了声辐射特性分析,以量化和可视化电源变压器的外部声场。然后从室内变电站的噪声辐射水平测量中总结部门间和行业间的反馈。最后,将这些声辐射特性分析结果和反馈应用于集成布局修改和吸音结构改进的低噪声室内变电站的重新设计中,以降低噪声敏感区域边界处的声压级。对比分析结果表明,在土地成本中性的前提下,改进的布局和吸声结构可以限制变电站噪声对周围声景的影响,且噪声敏感区域边界处的最大声压级的平均值为比以前小6.6 dBA。

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