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Frequency-Dependent Attenuation of Blasting Vibration Waves

机译:爆破振动波的频率依赖性衰减

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The dominant frequency, in addition to the peak particle velocity, is a critical factor for assessing adverse effects of the blasting vibration on surrounding structures; however, it has not been fully considered in blasting design. Therefore, the dominant frequency-dependent attenuation mechanism of blast-induced vibration is investigated in the present research. Starting with blasting vibration induced by a spherical charge propagating in an infinite viscoelastic medium, a modified expression of the vibration amplitude spectrum was derived to reveal the frequency dependency of attenuation. Then, ground vibration induced by more complex and more commonly used cylindrical charge that propagates in a semi-infinite viscoelastic medium was analyzed by numerical simulation. Results demonstrate that the absorptive property of the medium results in the frequency attenuation versus distance, whereas a rapid drop or fluctuation occurs during the attenuation of ground vibration. Fluctuation usually appears at moderate to far field, and the dominant frequency generally decreases to half the original value when rapid drop occurs. The decay rate discrepancy between different frequency components and the multimodal structure of vibration spectrum lead to the unsmooth frequency-dependent attenuation. The above research is verified by two field experiments. Furthermore, according to frequency-based vibration standards, frequency drop and fluctuation should be considered when evaluating blast safety. An optimized piecewise assessment is proposed for more accurate evaluation: With the frequency drop point as the breakpoint, the assessment is divided into two independent sections along the propagating path.
机译:除了峰值粒子速度之外,优势频率是评估爆破振动对周围结构的不利影响的关键因素;然而,它尚未在爆破设计中得到充分考虑。因此,在本研究中研究了喷射诱导振动的显性频率依赖性衰减机制。从在无限粘弹性介质中传播的球形电荷传播的球形电荷引起的爆破振动开始,导出振动幅度谱的修改表达以揭示衰减的频率依赖性。然后,通过数值模拟分析由在半无限粘弹性介质中传播的更复杂和更常用的圆柱电荷引起的接地振动。结果表明,介质的吸收性能导致频率衰减与距离,而在接地振动的衰减期间发生快速下降或波动。波动通常出现在中等到远场,主导频率通常会在快速丢失时降至原始值的一半。不同频率分量与振动谱之间的多峰结构之间的衰减率差异导致未俯视频率依赖性衰减。通过两个现场实验验证了上述研究。此外,根据基于频率的振动标准,应在评估爆炸安全时考虑频率下降和波动。提出了一种优化的分段评估,以获得更准确的评估:随着频率降点作为断点,评估分为沿传播路径的两个独立部分。

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