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Three dimensional observation of sound leakage from slide type window sash using particle velocity sensor

机译:使用粒子速度传感器的三维观察滑动式窗扇的声音泄漏

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Opening parts such as window and door are weak points for the sound insulation of perimeter parts of buildings. Especially, sliding type window sash has a lot of spaces, and sound wave remarkably penetrates trough them. Such sound leakage looses the performance of sound insulation of the building wall. In this study, the sound penetration trough the glass plate and sound leakage of a small sliding type sample of window sash were observed using three-dimensional particle velocity sensor. Resonance sound penetrations with high peaks through peripheral spaces were clearly observed at many frequencies in the area higher than 1 kHz, and these dreadfully decreased the performances of sound insulation from the base of the mass low of glass part. Distribution maps of the sound strength on measured and analyzed sound penetrated through the glass and leaked trough the air gaps on the test window sash clearly show the weak points on the sound insulation of perimeter parts of buildings. Model calculation of sound propagation through the air gap on the meeting part of window sash can be corresponded to the analyzed frequency characteristics of leaked sound which has repeating high peaks and dips in frequency domain higher than 1000 Hz.
机译:窗户和门等开口部分是建筑物外围部分隔音的弱点。特别地,滑动式窗扇具有很大的空间,并且声波显着穿透它们。这种声音泄漏会使建筑物墙壁的隔音性能变差。在这项研究中,使用三维粒子速度传感器观察到穿过玻璃板的声音穿透和小的滑动式窗扇样品的声音泄漏。在高于1 kHz的区域中的许多频率处都清楚地观察到共振声音穿透高峰穿过外围空间,这严重降低了从玻璃零件质量低点开始的隔声性能。通过测试和分析的声音穿透玻璃并从测试窗扇上的气隙漏出的声音中的声强分布图清楚地显示了建筑物外围部分的隔音薄弱点。通过窗扇相接部分上的气隙传播的声音的模型计算可以对应于分析的泄漏声的频率特性,该泄漏声在高于1000 Hz的频域中具有重复的高峰和低谷。

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