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首页> 外文期刊>Journal of Engineering and Technological Sciences >Calculation of Peak Particle Velocity Caused by Blasting Vibration in Step Topography
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Calculation of Peak Particle Velocity Caused by Blasting Vibration in Step Topography

机译:阶跃地形中爆破振动引起的峰值粒子速度的计算

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摘要

High ground vibrations not only adversely affect the integrity of the structures in a mine area but also create inconvenience for the nearby population. In order to protect the Sanyou Mine slope in Tangshan, China from blasting vibration, the peak particle velocity in step topography must be accurately calculated. At present, the reflection coefficient of the stress wave at free interface is not considered in the equation for calculating the peak particle velocity in step topography. Therefore the accuracy of the peak particle velocity calculation is decreased in the side direction when the reflection coefficient changes. In this study, a 3D finite element analysis was employed for modeling of the blasting vibration. A series of field-testing experiments was conducted to measure the peak particle velocity. Then the reflection coefficient of the stress wave was calculated. Based on this, the principle of the peak particle velocity in step topography was explained. In addition, the application range of the equation in step topography was determined and a new equation for peak particle velocity calculation in step topography is proposed based on the numerical simulation analysis and field-testing experiment.
机译:较高的地面振动不仅会不利地影响矿区结构的完整性,还会给附近的居民带来不便。为了保护唐山三友矿山边坡不受爆破振动的影响,必须准确计算台阶形貌中的峰值粒子速度。目前,在阶跃形貌中用于计算峰值粒子速度的方程式中未考虑应力波在自由界面处的反射系数。因此,当反射系数改变时,峰值粒子速度计算的精度在侧面方向上降低。在这项研究中,采用3D有限元分析对爆破振动进行建模。进行了一系列的现场测试实验,以测量峰值粒子速度。然后计算应力波的反射系数。在此基础上,阐述了阶梯形貌中峰值粒子速度的原理。此外,在数值模拟分析和现场试验的基础上,确定了该方程在阶梯形貌中的应用范围,并提出了一种新的阶梯形峰速度计算方程。

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