罗马“米塞里科迪亚教堂”的声学特征

IF 1.4 Q3 ACOUSTICS BUILDING ACOUSTICS Pub Date : 2020-08-08 DOI:10.1177/1351010X20948653
Giuseppe Ciaburro, G. Iannace, A. Trematerra, Ilaria Lombardi, M. Abeti
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引用次数: 8

摘要

本文讨论了罗马“圣母堂”教堂的声学特征。教堂由建筑师理查德·迈耶设计,于2003年开放。它完全由白色混凝土制成,由三个分隔层组成,形状像一个船帆。中殿的屋顶是玻璃的。体积约为14000立方米。最高测量值约为26米。中殿宽度为19.5 m,最大宽度为29.5 m,内部长度为32.0 m,总长度为45.6 m。它可以容纳大约240人。声学测量是通过在中殿(观众占据的区域)的不同点放置麦克风来进行的,声源被放置在祭坛上。因此,可以获得教堂内部平均声学特性的空间分布。在1000hz的频率下,混响时间的平均值约为10s。在目前的结构中,教堂既不适合理解语音,也不适合听音乐。在建筑声学软件的帮助下,创建了一个3D虚拟模型,可以研究教堂内部的声场。为了减少混响时间的值,我们分析了进行适当声学校正的可能性,方法是在教堂的侧壁上放置足够数量的吸音聚酯板。
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The acoustic characteristics of the “Dives in Misericordia” Church in Rome
This paper discusses the acoustic characteristics of the “Dives in Misericordia” Church in Rome. The church was designed by architect Richard Meier and opened in 2003. It was made entirely of white concrete and consists of three septa with a double curve shaped like a sail. The nave roof is glass. The volume is approximately 14.000 cubic meters. The highest measuring is approximately 26 m. the width of the nave is 19.5 m, while the maximum width is 29.5 m, while the internal length is 32.0 m, while the total length is 45.6 m. It can seat approximately 240 people. The acoustic measurements were taken by placing a microphone at different points of the nave (the area occupied by the audience), with the sound source being placed on the altar. It was therefore possible to obtain a spatial distribution of the average acoustic characteristics inside the church. At a frequency of 1000 Hz, the average values of the reverberation time is about 10 s. In its current configuration, the church is neither suitable for understanding speech nor listening to music. A 3D virtual model was created and with the help of the building acoustics software it was possible to study the sound field inside the church. The possibility to carry out an appropriate acoustic correction was analyzed, in order to reduce the values of the reverberation time, by pacing on a side wall of the church an adequate number of sound-absorbing polyester panels.
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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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