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An innovative technique of simplified signature hole analysis for prediction of blast-induced ground vibration of multi-hole/production blast: an empirical analysis

机译:多孔/生产爆破喷射地面振动预测简化签名孔分析的创新技术:实证分析

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Prediction and control of blast-induced ground vibration is a matter of concern in mining industry since long. Several approaches ranging from scaled distance regression, different numerical methods to wave superimposition theories have been tried by many researchers for better prediction and control of blast-induced ground vibration. Signature hole analysis is one of the popular simulation methods to predict the ground vibration generated due to production blast. It superimposes the recorded signature hole waveform using a computer program to predict the production blast-induced vibration. The technique inputs the designated time of detonation of each hole and superimposes the waves generated by each hole to predict the nearest value of peak particle velocity and frequency of blast-induced ground vibration. Although a very useful approach, it requires a computer program to simulate the linear superimposition of waveforms. The simulation is not possible for every blast as it takes time and also is difficult for field engineers to simulate every time, whereas it is always easy for blasting engineers to adapt and use an empirical equation/approach for prediction and control of blast-induced ground vibration than simulation. In this paper, an attempt has been made to develop an innovative and simplified analytical approach of signature hole analysis. The simplified sinusoidal wave equation is obtained from recorded signature hole ground vibration waveform properties and is superimposed mathematically according to the multi-hole blast design to predict the production blast-induced ground vibrations. The validation of the developed approach was done in three different sites, and up to 15% more accuracy in prediction of the blast, vibrations are achieved in comparison with signature hole analysis prediction.
机译:爆炸诱导地面振动的预测和控制是矿业行业令人担忧的问题。许多研究人员已经尝试了缩放距离回归的几种方法,从而尝试了许多研究人员进行了更好的预测和控制爆炸诱导的地面振动的预测和控制。签名孔分析是预测生产爆炸引起的地面振动的热门仿真方法之一。它使用计算机程序叠加记录的签名孔波形,以预测生产爆炸引起的振动。该技术输入每个孔的指定的爆炸时间,并叠加每个孔产生的波以预测峰值粒子速度和频率的最接值的峰值诱导的地面振动。虽然是一种非常有用的方法,但它需要计算机程序来模拟波形的线性叠加。每次爆炸都不可以模拟,因为它需要时间并且难以每次模拟现场工程师,而爆破工程师始终容易进行调整和使用爆炸诱导地面预测和控制的经验方程/方法振动而不是模拟。在本文中,已经尝试开发一种创新和简化的分析方法的签名孔分析。简化的正弦波方程是从记录的签名孔接地振动波形特性获得的,并且根据多孔爆炸设计来叠加数学,以预测生产爆炸诱导的地面振动。在三种不同的部位进行了开发方法的验证,并且在签名孔分析预测比较的情况下,实现了在爆破的预测方面的准确度高达15%。

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