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首页> 外文期刊>Technology, Architecture + Design >A Sound Approach to Concrete: Transforming Concrete Through Shape and Porosity for Acoustical Reflection, Diffusion, and Absorption
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A Sound Approach to Concrete: Transforming Concrete Through Shape and Porosity for Acoustical Reflection, Diffusion, and Absorption

机译:混凝土的声音方法:通过形状和孔隙度转换混凝土,用于声学反射,扩散和吸收

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摘要

The shape, interior volume, and materiality of the built environment influence occupant perception of sound. Placement and articulation of surfaces directly relate to how sound is reflected, diffused, and absorbed prior to aural reception and comprehension. Researchers experimented with and fabricated prototypical aerated concrete sawtooth panels by manipulating ingredients and form, yielding acoustical properties conducive to speech frequencies (specifically Noise Reduction Coefficients). While acoustical measurements were primarily focused on multi-use educational spaces, laboratory testing and development of frequency-responsive porosity revealed data for evidence-based design applicable to various occupancy types. Attention to the spatial interactions of sound and noise corrected common speech intelligibility and clarity deficiencies by decreased reverberation times, linking surface, form, and spatial volume to reflection, diffusion, and absorption.
机译:建造环境的形状,室内体积和唯物性影响了对声音的乘员感知。 表面的放置和铰接直接涉及在听觉接收和理解之前对声音反射,扩散和吸收的声音。 研究人员通过操纵成分和形式来试验和制造原型曝气混凝土锯齿板,产生有利于言语的声学特性(具体降噪系数)。 虽然声学测量主要专注于多用途教育空间,但频率响应孔隙度的实验室测试和开发揭示了适用于各种占用类型的基于证据的设计的数据。 注意声音和噪音的空间相互作用通过减少混响时间,将表面,形式和空间体积与反射,扩散和吸收的反射,扩散和吸收相互作用。

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