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Study on the influence of initiation system on blast induced ground vibration in dragline operations

机译:启动系统对拖线作业爆炸诱导地面振动的影响研究

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摘要

During blasting,only a small portion of the total available energy of explosive reaction gets consumed in breaking up the rock while most of remaining energy gets dissipated in the form of ground vibration and air overpressure. These side effects of blasting operation not only reduce the powder factor but also prove to be a nuisance for the nearby human settlements and structures, both belonging to and not belonging to the owner of the mine. However, to fulfil the expanding production targets of large opencast mines the deployment of high capacity machines and consequent requirement of deep hole blasting with high amount of explosive consumptions is obvious. In such circumstances, the evaluation of the ground vibration parameters and development of new controlled blasting designs are the needs of the hour. Choice of better initiation system to reduce ground vibration is a major step in this direction. For this, an experimental study was conducted to understand the influence of initiation system on blast induced ground vibrations. In the study, 21 production blasts -10 using detonating fuse and 11 using electronic detonators, were monitored for ground vibration measurement. The blasts were conducted at the dragline benches of Jay ant opencast project. The results obtained from the study revealed that the percentage reduction in ground vibration levels, by using electronic detonators instead of detonating fuse, ranges from 33% to 9% for varying distance from the blast site ranging from 100 m to 1500 m.
机译:在爆破期间,只有一小部分爆炸反应的总能量能够在分解岩石时消耗,而大多数剩余能量以地面振动和空气过度压抑的形式消散。爆破操作的这些副作用不仅减少了粉末因子,而且证明是对附近的人类沉淀和结构的滋扰,无论是属于和不属于矿器的所有者。然而,为了满足大型露天矿井的扩大生产目标,高容量机的部署以及大量爆炸消耗的深孔爆破的要求是显而易见的。在这种情况下,对地面振动参数和新的受控爆破设计的开发的评估是当时的需求。选择更好的启动系统以减少地面振动是朝这个方向的重大步骤。为此,进行了实验研究以了解启动系统对爆炸诱导地面振动的影响。在该研究中,监测使用爆炸保险丝和11使用电子雷管的21种生产爆炸,用于接地振动测量。爆炸在Jay Ant Opencast项目的Dragline长椅上进行。从该研究获得的结果表明,通过使用电子雷管代替释放熔丝的地面振动水平降低百分比,范围为33%至9%,从100米到1500米的喷射部位不同。

著录项

  • 来源
    《Journal of Mines, Metals & Fuels》 |2019年第1期|共6页
  • 作者单位

    Senior Manager (Mining) Jayant Opencast Project Northern Coalfields Limited Coal India Limited Jayant 486 890 Singrauli Madhya Pradesh;

    Professor Research Scholar Department of Mining Engineering Indian Institute of Technology (ISM) Dhanbad 826 004 Jharkhand;

    Research Scholar Department of Mining Engineering Indian Institute of Technology (ISM) Dhanbad 826 004 Jharkhand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿业工程;
  • 关键词

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