基于尺寸分析的复杂地形下爆破振动预测公式

Leilei Tian, Lang Zhu, Zhaowei Yang, Yingguo Hu, Peng Li, Meishan Liu, Gen Zhao
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摘要

爆破振动的准确预测对爆破负面效应评估和爆破设计优化具有重要作用。在明确爆破振动传播影响因素的前提下,结合尺寸分析,在传统萨多夫斯基公式的基础上,通过引入水平距离和高差系数,研究了山区地形条件下爆破振动的衰减规律,建立了反映山区地形条件的爆破振动预测公式。结合福建厦门抽水蓄能电站地下电站开挖振动实测数据,当测点与爆源之间的高程变化较大时,采用传统的萨多夫斯基公式对水平振动和垂直振动的预测误差较大,分别约为 16%~25%。基于尺寸分析的振动预测公式的预测误差较小,约为 8 ~ 12%。结果表明,基于尺寸分析的颗粒振动峰值公式可以更好地应用于复杂地形下的爆破振动预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction formula of blasting vibration under complex terrain based on dimensional analysis
The accurate prediction of blasting vibration plays an important role in the evaluation of blasting negative effects and the optimization of blasting design. On the premise of clarifying the influencing factors of blasting vibration propagation, combined with dimensional analysis, based on the traditional Sadovsky formula, through the introduction of horizontal distance and elevation difference factor, the attenuation law of blasting vibration under mountainous terrain conditions is studied, and the blasting vibration prediction formula reflecting mountainous terrain conditions is established. Combined with the measured vibration data of underground powerhouse excavation of Xiamen pumped storage power station in Fujian Province, when the elevation between the measuring point and the explosion source changes greatly, the prediction errors of horizontal and vertical vibration by using the traditional Sadovsky formula are large, about16 ~ 25%respectively. The prediction errors of vibration prediction formula based on dimensional analysis are small, about 8 ~ 12%. The results show that the particle vibration peak formula based on dimensional analysis can be better applied to the prediction of blasting vibration under complex terrain.
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