Optimization of Blasting Geometry and Explosive Quantity in Control Blasting for Dimension Stone Extraction

Swh Kavinda, Nahper Siriwardana, Jpd Chathuranga
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Abstract

Dimension stone industry is a widespread market in the globe and has shown promising trends for expansion in the recent years. Dimension stones can be defined as, natural stones that have been selected and extracted to produce stones of precise size and shape. Products of dimension stones have been used for construction engineering practices and various other ornamental purposes. The available extraction practices for dimension stones can be categorized mainly into mechanical cutting and splitting techniques. Pre-split blasting is one of the splitting techniques that can be utilized to liberate dimension stone blocks from the rock deposit. The major drawback of utilizing explosive blasting in dimension stone extraction is the possibility of having high amount of wastes as a result of unnecessary fractures from the excessive explosive energy. By studying the relationship between blasting geometry and explosive quantity towards forming fractures in the selected ornamental stone, the aforementioned issue can be addressed to some extent. Software simulations were done to determine the blast design's ideal parameters for achieving an effective explosive energy distribution in the rock mass. Validation of the obtained simulation results through a field blast can be suggested as further development in the study area.
维石开采控制爆破爆破几何形状及炸药用量优化
尺寸石材行业在全球范围内是一个广泛的市场,近年来呈现出良好的发展趋势。尺寸石可以定义为,经过挑选和提取,生产出精确大小和形状的天然石头。尺寸石的产品已用于建筑工程实践和各种其他装饰目的。现有的尺寸石提取方法主要分为机械切割和劈裂两种。预裂爆破是一种能将块石块从岩体中解放出来的劈裂技术。利用炸药爆破开采维石的主要缺点是由于爆炸能量过大而产生不必要的裂缝,可能产生大量的废料。通过研究所选观赏石的爆破几何形状和炸药量与裂缝形成的关系,可以在一定程度上解决上述问题。通过软件模拟来确定爆破设计的理想参数,以实现有效的炸药能量在岩体中的分布。通过现场爆破验证所获得的模拟结果可以作为研究区域的进一步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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