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Acoustical and Electroacoustical Process for Improving a Multi-purpose Sports Stadium

机译:用于改善多功能体育馆的声学和电声工艺

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Multi-purpose sports stadiums have become an efficient and cost-effective solution for accommodating both speeches and musical performances. Particularly at universities, stadiums tend to be used not only for sporting events but also for ceremonies and other extracurricular activities. However, the expansive space of stadiums often results in a long reverberation time and thus causes problems with acoustics. In this study, we selected a university stadium to carry out a case study of a practical process for improving acoustics. We utilized field measurements to diagnose current performance and found that reverberation time was quite large. We performed a simulation with ODEON software and compared the results with the field measurements to verify the boundary conditions. Afterwards, we simulated design strategies based on both architectural acoustics and electroacoustics for evaluation. We found that a curve-shaped ceiling for MPP can reduce the reverberation time to approximately 2 seconds (unoccupied). Furthermore, various acoustic parameters, including SPL(A), C80, and STI, were improved via the electroacoustics process. Both the uniformity and the clarity of sound distribution were expected to be significantly improved for speeches by arranging the position and angle of the speakers.
机译:多功能运动场已成为兼顾演讲和音乐表演的高效且经济高效的解决方案。特别是在大学中,体育场不仅会用于体育赛事,而且还用于仪式和其他课外活动。但是,体育馆的广阔空间通常会导致较长的混响时间,从而导致声学问题。在这项研究中,我们选择了一个大学体育馆来对改善声学效果的实际过程进行案例研究。我们利用现场测量来诊断当前性能,发现混响时间非常长。我们使用ODEON软件进行了仿真,并将结果与​​现场测量结果进行了比较,以验证边界条件。之后,我们基于建筑声学和电声学仿真设计策略进行评估。我们发现MPP的曲线形天花板可以将混响时间减少到大约2秒(空闲)。此外,通过电声过程改善了包括SPL(A),C80和STI在内的各种声学参数。通过安排扬声器的位置和角度,语音分配的均匀性和清晰度都有望得到显着改善。

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