Acoustic optimization of curved architecture in practice: The new Strait Cultural Arts Center in Fuzhou

IF 1.4 Q3 ACOUSTICS
Y. Jurkiewicz, Henrik Møller, T. Wulfrank, Jingbo Wang, E. Kahle
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引用次数: 1

Abstract

Curved surfaces are increasingly part of the architectural language used in buildings for the performing arts, yet have known challenges both in reality and in ray-tracing-based computer simulations. The designs of the 1000-seat symphony hall, the 1600-seat opera house and the 800-seat multi-purpose hall in Fuzhou, China, were all based on curved surfaces, both convex and concave, often covered with local ceramic tiles. Providing the right amount, distribution and quality of early reflections thus required a precise analysis of the acoustic behavior of curved surfaces. The acoustic design interacted with the architecture in precisely shaping those curves in 3D. In order to explore the acoustic potential and detect problems related to the architectural concept of both rooms, novel geometrical acoustics analysis algorithms were developed within NURBS modeling software rather than relying on commercial ray-tracing algorithms. Optimization of the curved surfaces is obtained when the output of these algorithms, the interpretation of the acoustic consultant, and the required integration of acoustic solutions within the global architectural concept are all aligned – a “meeting of minds” between acoustics and architecture. The analysis procedure and geometrical acoustics algorithms used will be presented in detail, as well as the related decision-making process, the acoustic predictions and the measurement results of the three built halls.
曲线建筑声学优化的实践——福州海峡文化艺术中心新馆
曲面越来越多地成为表演艺术建筑中使用的建筑语言的一部分,但在现实和基于光线追踪的计算机模拟中都存在已知的挑战。中国福州有1000个座位的交响乐厅、1600个座位的歌剧院和800个座位的多功能厅的设计都是基于曲面,有凸有凹,通常覆盖着当地的瓷砖。因此,提供正确数量、分布和质量的早期反射需要对曲面的声学行为进行精确分析。声学设计与建筑相互作用,在3D中精确地塑造这些曲线。为了探索声学潜力并检测与两个房间的建筑概念相关的问题,在NURBS建模软件中开发了新的几何声学分析算法,而不是依赖于商业光线跟踪算法。当这些算法的输出、声学顾问的解释以及全球建筑概念中声学解决方案的必要集成都一致时,曲面的优化就实现了——声学和建筑之间的“思想交汇”。将详细介绍所使用的分析程序和几何声学算法,以及相关决策过程、声学预测和三个已建成大厅的测量结果。
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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