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Experience with and benefits from the use of 3D Stereophotogrammetry for blast design and control

机译:使用3D立体光图进行爆炸设计和控制的经验和优势

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Surveying of a bench face before blasting is a pre-requisite for a proper blast planning and for a satisfying blasting result both in terms of safety and fragmentation. When surveying a bench face, preferably a large amount of measurement points are required in order to determine the geometry and especially the irregularities with sufficient accuracy. Only contact-free measuring systems allow evenly distributed measurements over the whole bench surface. Existing systems such as total station, laser profiler, or laser scanner show significant drawbacks such as that surveying results are just isolated values of the bench geometry such as heights or profiles, that borehole positions have to be defined in advance in order to know where to take profile measurements and that systems require special surveying skills and that they are expensive too. In order to overcome these difficulties and to provide the blasters a simple tool for bench surveying, blast design and layout and the subsequent back-transfer of the blast plan into the quarry, the Department of Mineral Resources& Petroleum Engineering of the University of Leoben, 3G Software & Measurement company and Mineral AB, one of the largest producers of aggregates in Europe formed a joint venture to develop a new system. Based on an existing stereophotogrammetric system for rock surface surveying and joint analysis (JointMetrix), a new tool was developed within a year. Apart from several mines and quarries using that new tool already today in the daily work, both the Department of Mineral Resources& Petroleum Engineering at the University of Leoben and Austin Powder GmbH Blasting Service did a lot of studies to determine the reliability of the new stereophotogrammetric blast surveying and planning system and its precision in comparison to classical laser surveying equipment. After 1 year of testing and comparison with laser based surveying instruments, it can be concluded, that the new technology of blast surveying& design systems based on stereophotogrammetry is suitable for being used in the daily work routine in quarries and mines. The comparison of the precision of laser based systems and stereophotogrammetric systems has shown, that the deviation between these two types of systems is less than 10 cm, in many cases even lower.
机译:爆破前的板凳面的测量是一个先决条件,适当爆炸规划和令人满意的爆破结果无论是在安全性和碎片化的方面。当测量的长凳面,优选大量的测量点的需要,以便确定的几何形状和特别的凹凸以足够的精度。只有非接触式测量系统允许均匀地分布在整个台面上的测量。现有的系统如全站仪,激光轮廓仪或激光扫描仪显示显著缺点,例如该测量结果只是孤立替补几何如高度或轮廓的值,即钻孔的位置必须预先以知道在哪里被定义采取剖面测量和系统需要专门的测量技能,他们是太昂贵。为了克服这些困难,并提供放炮了板凳测量,爆破设计和布局,爆炸计划的后续反向转移到采石场一个简单的工具,莱奥本,3G大学的矿产资源和石油工程系软件和测量公司,矿产AB,欧洲聚集的最大生产商之一组建了合资公司,以开发新的系统。基于对岩石表面测绘和联合分析(JointMetrix)现有的立体摄影系统,一个新的工具在一年内制定。除了几个矿场和采石场今天使用新的工具已经在日常工作中,无论是矿产资源和石油工程的莱奥和奥斯汀粉有限公司爆破服务的大学部做了很多的研究,以确定新的立体摄影爆炸的可靠性测量及都市规划系统及其在比较传统的激光测量设备的精度。 1年测试和基于测绘仪器激光对比后,可以得出结论,即基于立体摄影爆炸勘测设计系统的新技术,适用于在采石场和矿山的日常工作中使用。基于激光的系统和立体摄影系统的精度的比较表明,这两种类型的系统之间的偏差小于10厘米,在许多情况下甚至更低。

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