A performance-based optimization approach for diffusive surface topology design

IF 1.4 Q3 ACOUSTICS
L. Shtrepi, T. M. Méndez Echenagucia, E. Badino, A. Astolfi
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引用次数: 2

Abstract

Different numerical techniques have been used in the last decades for the acoustic characterization and performance optimization of sound diffusive surfaces. However, these methods require very long calculation times and do not provide a rapid feedback. As a result, these methods can hardly be applied by designers at early stages of the design process, when successive design iterations are necessary from an aesthetic point of view. A suitable alternative could be the use of parametric modeling in combination with performance investigations during the design process of sound diffusive surfaces. To this aim, this study presents a design process for diffusive surfaces topology optimization based on the combination of parametric models and geometrical acoustic simulations. It aims to provide architects and designers with rapid visual feedback on acoustic performances at a preliminary stage of the design process. The method has been tested on different case studies, which have been modelled based on geometric guidelines for diffusive surface optimization. The sensitivity of the method showed that it could be a very useful tool for comparisons among surface design alternatives. Finally, the advantages and limitations of the integrated optimization in comparison with conventional optimizations are discussed.
一种基于性能的扩散表面拓扑设计优化方法
在过去的几十年里,不同的数值技术被用于声音扩散表面的声学表征和性能优化。然而,这些方法需要非常长的计算时间,并且不能提供快速的反馈。因此,设计师在设计过程的早期阶段很难应用这些方法,因为从美学的角度来看,连续的设计迭代是必要的。一个合适的替代方案可以是在声音扩散表面的设计过程中结合性能调查使用参数建模。为此,本研究提出了一种基于参数模型和几何声学模拟相结合的扩散表面拓扑优化设计过程。它旨在为建筑师和设计师在设计过程的初步阶段提供关于声学性能的快速视觉反馈。该方法已在不同的案例研究中进行了测试,这些案例研究基于扩散表面优化的几何准则进行了建模。该方法的灵敏度表明,它可以成为一种非常有用的工具,用于表面设计备选方案之间的比较。最后,讨论了集成优化与传统优化相比的优势和局限性。
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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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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