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Predicted and experimental results of acoustic parameters in the new Symphony Hall in Pamplona, Spain

机译:西班牙潘普洛纳新交响乐厅声学参数的预测和实验结果

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Two room acoustical simulation software have been used to predict the main acoustic parameters of a Symphony Hall in the planning stage, when only drawings were available. The modelled room is the Symphony Hall of the Conference Hall of Navarre, in Pamplona, Spain. Although the values of the calculation parameters (number of rays, reflection order, etc.) recommended by each software are slightly different, in this work the same values were used for both programs. Once the Hall was built, experimental results were obtained using the MLS-measurement technique. The values predicted and measured for several parameters defined in ISO 3382 at 9 receiver positions are compared. Even though the values predicted by both software are very similar for most of the acoustic parameters, there are notable differences at particular values, mainly when evaluating energy ratios. Different statistical corrections for late reflections between both programs seem to be the main reason for these differences. A more exhaustive knowledge of scattering coefficients is required to improve predictive accuracy. Important differences at 250 Hz frequency band were found between calculated and measured values probably due to the yet to be implemented seat dip effect in room simulation software. The comparison of calculated and measured impulse responses seems to be the first choice for the assessment of room simulation software. However, it should be kept in mind that its usability is also determined by many additional features. This work is not only a comparison of software dealing with the same object as well as equal input data but also shows the power of this kind of tool to predict the acoustic parameters of a room before its construction.
机译:当仅有图纸可用时,已在计划阶段使用两个室内声学模拟软件来预测交响音乐厅的主要声学参数。建模的房间是西班牙潘普洛纳的纳瓦拉会议厅交响乐厅。尽管每个软件推荐的计算参数值(光线数量,反射顺序等)略有不同,但在这项工作中,两个程序使用了相同的值。大厅建成后,可以使用MLS测量技术获得实验结果。比较在9个接收器位置针对ISO 3382中定义的几个参数预测和测量的值。即使两个软件预测的值在大多数声学参数上非常相似,但在特定值上仍存在显着差异,主要是在评估能量比时。两个程序之间对后期反射的不同统计校正似乎是造成这些差异的主要原因。需要更详尽的散射系数知识以提高预测精度。在计算值和测量值之间发现了在250 Hz频带上的重要差异,这可能是由于尚未在房间模拟软件中实现的座椅倾斜效果。计算和测量的脉冲响应的比较似乎是评估房间模拟软件的首选。但是,应记住,其可用性还取决于许多其他功能。这项工作不仅是对处理相同对象和相等输入数据的软件的比较,而且还显示了这种工具在构建房间之前预测房间声学参数的能力。

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