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首页> 外文期刊>騒音制御 >Characteristics of blast low frequency noise/infrasound by blast densification method and the comparisons with several evaluation methods for low frequency noise/infrasound
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Characteristics of blast low frequency noise/infrasound by blast densification method and the comparisons with several evaluation methods for low frequency noise/infrasound

机译:爆炸致密化方法对爆炸性低频噪声/次声的特征及其与几种评价方法的比较

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摘要

Experimental results of the generation, propagation and attenuation of impulsive low frequency sounds by underground blasting for preventing the ground liquefaction were described. The effects of the blast sounds to surrounding environments were also examined by the comparisons to several evaluation methods for low frequency sounds, as well as by the field surveys for human responses to the low frequency noises. Rapid and sharp increases of sound pressures, which were generated by the impulsive motion of the ground surface, were observed near the blasting point, and the sound pressure, which were generated by rapid gas burst through the boreholes, followed. At distant receivers, the sounds with relatively high frequencies, which were produced by the ground vibrations, propagated precedent to the sounds described above. Although the sound by the impulsive motion of the ground surface extensively attenuated at the distant receivers, the sound by rapid gas burst was clearly measured. Frequency components of the sounds were predominant in range of infrasound after long-range propagation. The occurrences of secondary noises by the rattling of building fittings and disturbance of sleep were suggested from the comparisons between the experimental results and some thresholds for evaluation of the low frequency noises and from the relationships between occurrences of annoyance and G-weighted sound pressure levels.
机译:描述了通过地下爆破产生,传播和衰减脉冲低频声音以防止地面液化的实验结果。还通过与几种低频声音评估方法进行比较,以及通过对人类对低频噪声的响应的实地调查,检查了爆炸声对周围环境的影响。在爆破点附近观察到了由地面的脉冲运动产生的声压的迅速而急剧的增加,随后是由于气体快速通过钻孔而产生的声压。在远处的接收器处,由地面振动产生的具有相对较高频率的声音传播到上述声音的先例。尽管在远处的接收器处,地面冲动产生的声音已大大衰减,但可以清楚地测量到快速气体爆炸产生的声音。声音的频率成分在远距离传播后的次声范围内占主导地位。从实验结果与低频噪声评估的一些阈值之间的比较,以及烦恼的发生与G加权声压级之间的关系,提出了由于建筑设备嘎嘎作响和睡眠障碍而引起的二次噪声的发生。

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