教科文组织国际教育规划研究所阶梯教室的声学分析

Q4 Earth and Planetary Sciences
W. H. Tan, N. M. Hafiz, C. K. Chan, J. Niresh
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引用次数: 0

摘要

声学分析是一种测量方法,用于分析声波在封闭空间中的行为,这种行为会影响语音清晰度。影响语音清晰度的另一个参数是混响时间。混响时间是声源衰减 60 分贝的时间。混响时间越长,声音消散越慢,导致声波不断反射,从而影响学生上课时的注意力。此外,不良的声学环境可能会影响健康和授课效果。本研究的目的是确定和分析 UniMAP 五个选定阶梯教室的声学性能。混响时间是本研究的参数,它是利用气球爆裂的脉冲声源法,通过声压的均方根(RMS)获得的。在本研究中,所有情况下记录到的 "气球爆裂 "声压均约为 105 分贝。该测量值表示刺激声的峰值声强。研究了接收器的位置、设计和阶梯教室的空间体积对混响时间的影响。在距离声源 6 米、有椅子的房间的后墙上,BKN 5 和 BPU 5 测得的混响时间分别为 1.3 秒和 1.2 秒。混响时间值较高的原因在于声音接收器的位置。如果声音接收器靠近墙壁,就会受到大量声波的反射,导致室内产生混响。与其他阶梯教室相比,BKN 5 和 BPU 5 的长度较短。它们的长度分别为 11.639 米和 11.689 米,因此声音接收器更靠近墙壁,混响时间也更长。BKN 5 号房间的容积为 258.3 立方米,混响时间最长(有椅子的房间平均混响时间为 1.2 秒)。这是因为它比其他房间更大。因此,随着房间容积的增大,混响时间也会变长。在没有椅子的情况下,BPU 5 房间的混响时间最长(平均为 2.4 秒),但与其他房间相比,它的空间容积(242.4 立方米)也最小。因此,当房间里没有椅子时,声波消逝的时间会更长。如果较小的房间没有足够的吸音材料,混响时间会更长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ACOUSTICAL ANALYSIS FOR THE LECTURE ROOMS IN UNIMAP
Acoustic analysis is a measurement used to analyse the behaviour of sound waves in enclosed spaces, which influences speech intelligibility. Another parameter that influences speech intelligibility is reverberation time. Reverberation time is the time for the sound source to decay by 60 dB. A high reverberation time causes sound to dissipate more slowly, resulting in continual reflection of sound waves, which disrupts student concentration in class. Furthermore, a poor acoustic environment could have an impact on health and lecture delivery. The objective of this study is to determine and analyse the acoustic performance for five selected lecture rooms in UniMAP. The reverberation time is the parameter of this study that was obtained from the Root Mean Square (RMS) of the sound pressure by using the impulsive sound source method from a burst balloon. In this study, the "balloon pop" sound pressure was consistently recorded at approximately 105dB across all cases. This measurement indicates the peak sound intensity of the stimulus. The influence of the location of receiver, design, and space volume for the lecture room on the reverberation time was investigated. At a location of 6 m from the sound source, at the back wall of a room with chairs, BKN 5 and BPU 5 measured longer reverberation times of 1.3 s and 1.2 s, respectively. The higher value of reverberation time is caused by where the sound receiver is. If it is close to a wall, the sound receiver will be exposed to numerous reflections of sound waves, causing the room to become reverberant. Compared to other lecture rooms, the length of BKN 5 and BPU 5 is shorter. Their lengths are 11.639 m and 11.689 m, so the sound receiver is closer to the wall and makes the reverberation time higher. BKN 5 room, which has a volume of 258.3 m3, had the highest reverberation time (1.2 s on average in a room with chairs). This is because it is larger than the other rooms. So, the reverberation times get longer as the room's volume increases. BPU 5 room had the longest reverberation time for a condition room without chairs (an average of 2.4 s), but it also had the smallest space volume (242.4 m3) compared to the other rooms. Thus, it takes longer for the sound waves in the room to fade away when there are no chairs there. If the smaller room didn't have enough sound-absorbing materials, the reverberation times would be longer.
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来源期刊
ASEAN Engineering Journal
ASEAN Engineering Journal Engineering-Engineering (all)
CiteScore
0.60
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0.00%
发文量
75
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