An ultra-thin multi-layered metamaterial for power transformer noise absorption

IF 1.4 Q3 ACOUSTICS BUILDING ACOUSTICS Pub Date : 2021-08-28 DOI:10.1177/1351010X211041704
N. Sharafkhani
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引用次数: 1

Abstract

A compact multi-layered structure is proposed based on the coiled-up space concept for power transformer noise absorption at 100 and 200 Hz. Current methods of constructing multi-band absorbers are impractical for power transformer noise control due to the high coupling effect deteriorating their performance. To overcome this shortcoming, the proposed structure is composed of multiple connected layers creating two separate coiled ducts with adjustable dimensions to minimise the coupling effect. In the modelling stage, the geometrical features are optimised using the genetic algorithm to maximise the absorption coefficient and minimise the thickness. The proposed dual-tone absorber has a thickness of 43.5 mm which is significantly thinner than the existing conventional absorbers. The measurement results on a 3D-printed structure demonstrate the feasibility of the design.
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一种电力变压器吸声用超薄多层超材料
基于卷绕空间概念,提出了一种紧凑的多层结构,用于100和200处的电力变压器噪声吸收 赫兹。目前构造多频带吸收器的方法对于电力变压器噪声控制是不切实际的,因为高耦合效应使其性能恶化。为了克服这一缺点,所提出的结构由多个连接层组成,形成两个尺寸可调的独立盘管,以最大限度地减少耦合效应。在建模阶段,使用遗传算法优化几何特征,以最大化吸收系数并最小化厚度。所提出的双色调吸收体的厚度为43.5 mm,这明显比现有的传统吸收器薄。在3D打印结构上的测量结果证明了该设计的可行性。
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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