利用时域有限差分仿真恢复教堂的低频响应

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2023-04-12 DOI:10.3390/acoustics5020023
F. Martellotta, S. Liuzzi, Chiara Rubino
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引用次数: 0

摘要

在许多地中海国家经常发现的软岩石的挖掘中获得了鲁佩斯特教堂的空间。本文研究了位于意大利阿普利亚莫诺波利市附近的圣安德鲁和普罗科皮乌斯教堂。进行了现场声学测量,获得了当前状态下声学的详细描述,指出由于分析技术的结合,在低频中存在显着的模态行为,导致混响时间约为2秒,比其他频段长四倍,并且强烈依赖于源和接收器位置(当源移到圣坛外时,变化约为1秒)。然而,由于教堂的特点是表面明显退化,地板上覆盖着大量的碎片,因此原始的声学条件可能会有所不同。声学建模可以非常有助于掌握原始条件,但由于空间尺寸小,传统的几何声学预测方法无法用于模拟低频行为。因此,本文提出了一种应用时域有限差分(FDTD)计算来模拟低频行为并分析原始状态的可能重建。结果表明,在共振频率和混响时间方面,预测结果与测量结果非常吻合,差异小于5%。在原始状态的假设重构中,模态响应也强烈影响声学条件,尽管声场被证明比当前状态下更均匀。
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Reviving the Low-Frequency Response of a Rupestrian Church by Means of FDTD Simulation
Rupestrian churches are spaces obtained from excavation of soft rocks that are frequently found in many Mediterranean countries. In the present paper the church dedicated to Saints Andrew and Procopius, located close to the city of Monopoli in Apulia (Italy) is studied. On-site acoustical measures were made, obtaining a detailed description of the acoustics in the current state pointing out, thanks to a combination of analysis techniques, the presence of significant modal behavior in the low frequencies, causing reverberation time to be about 2 s, four times longer than in the other bands, as well as being strongly dependent on source and receiver position (with variations of about 1 s when source is moved outside the chancel). However, as the church is characterized by significant degradation of surfaces and large amounts of debris cover the floor, the original acoustic conditions can be expected to somewhat differ. Acoustical modelling can be very helpful in grasping the original conditions, but given the small dimensions of the space, conventional geometrical acoustic prediction methods cannot be applied to simulate the low-frequency behavior. Thus, the present paper proposes an application of finite-difference-time-domain (FDTD) computation to simulate the low-frequency behavior and analyze a possible reconstruction of the original state. Results showed that a very good agreement was obtained between predictions and measurements, both in terms of resonance frequencies and reverberation times that differed by less than 5%. Modal response strongly affected the acoustical conditions also in the hypothetical reconstruction of the original state, although the sound field proved to be more uniform than in the current state.
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3.70
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