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On the acoustical measurement and modeling of large complex environments: the case of St. Anthony’s Basilica in Padua

机译:关于大型复杂环境的声学测量和建模:帕多瓦的圣安东尼大教堂

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As part of the acoustical characterization of St. Anthony’s Basilica in Padua, an investigation has been performed to evaluate factors that may affect sound propagation in large architectural environments having a complex geometry and coupled volumes, aiming at the optimization of the electro-acoustic sound diffusion systems. The interior, built in the 13th century, has a volume of 82000 cubic meters, including the seven domes surmounting the nave, the transept and the apse, and the ambulatory that surrounds it. In the first part of the work the sound field inside the Basilica has been measured in the current situation, using different techniques and different types of sources and excitation signals. At the same time the vertical temperature gradient has been measured by means of sensors distributed within the environment. Subsequently, a 3D geometrical model has been created and the sound propagation has been simulated via ray tracing technique, focusing on the acoustic conditions related to the different liturgical events which normally take place in the Basilica. The simulation study has been carried out with the aid of the experimental data previously acquired, which allowed a careful calibration of the model including the air absorption coefficient.
机译:作为帕多瓦圣安东尼大教堂声学特征的一部分,已经进行了一项研究,以评估可能影响具有复杂几何形状和耦合体积的大型建筑环境中的声音传播的因素,旨在优化电声声扩散系统。内部建筑建于13世纪,容积为82000立方米,其中包括超过中殿,中庭和后殿的7个圆顶,以及环绕中殿的自动门。在工作的第一部分中,在当前情况下,使用不同的技术以及不同类型的源和激励信号对大教堂内部的声场进行了测量。同时,垂直温度梯度已经通过分布在环境中的传感器进行了测量。随后,建立了一个3D几何模型,并通过射线追踪技术模拟了声音传播,重点是与大教堂中通常发生的不同礼拜仪式有关的声学条件。借助于先前获得的实验数据进行了模拟研究,从而可以对包括空气吸收系数的模型进行仔细校准。

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