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首页> 外文期刊>Journal of Explosives Engineering >Energy-based vibration predictor equations and Blast Damage Index for Blasting Gallery Panels
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Energy-based vibration predictor equations and Blast Damage Index for Blasting Gallery Panels

机译:爆破面板的基于能量的振动预测器方程式和爆破破坏指数

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Damage to underground roof and pillars in blasting gallery(BG)panels has been an increasingly important area of study in recent years due to the invention of new explosives and cord systems which has led to the modification and alteration of the design aspects developed by Charbonnage de France(CdF).According to extensive mine experiments conducted by Indian and foreign experts,it has been established that the induced peak particle velocity CPPV)is predominantly related to the emanated seismic energy of a source and the distance from the source.With that concept in mind,nearly 160 experimental blasts were carried out in four BG panels in India under varying geomining conditions.Based on the results obtained thus far,the authors have established predictor equations correlating explosive energy(in Joules)and distance from the shot to that of induced peak particle velocity received at the sensor point.Good correlation was obtained between the actual and the predicted values.It is realized that this equation may be used as an efficient tool to determine the size limit of blasts in BG panels so that the induced particle velocity does not create damage in underground workings as per the established Blast Damage Index(BDI)and other available safety norms.
机译:近年来,由于新炸药和绳索系统的发明,对炸药库(BG)面板中的地下屋顶和支柱的破坏已成为一个越来越重要的研究领域,导致对Charbonnage de所开发设计方面的修改和变更。法国(CdF)。根据印度和国外专家进行的大量矿山实验,已经确定,诱发峰值粒子速度CPPV)主要与震源发出的地震能量和距震源的距离有关。考虑到在不同的采矿条件下,在印度的四个BG面板中进行了将近160次实验爆炸。基于迄今为止获得的结果,作者建立了与爆炸能量(焦耳)和从炮弹到炸药的距离相关的预测方程。感应点处接收到的感应峰值粒子速度,在实际值和预测值之间获得了良好的相关性。该方程可被用作确定BG面板中爆炸尺寸极限的有效工具,从而根据既定的爆炸破坏指数(BDI)和其他可用的安全规范,诱发的粒子速度不会对地下作业造成破坏。

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