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The Computerized Design Program for Tunnel Blasting

机译:隧道爆破计算机化设计程序

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摘要

In this study, a computer program to design tunnel blasting pattern has been developed. The program consists of two parts; one is for tunnel blasting pattern design and the other is for blasting modeling to estimate the peak particle velocity, the distribution of fragmentation and the excavation damage zone. We modified the design method of tunnel blasting pattern suggested by Langefors because it provided undesirable pattern in blasting practices such as considerably large center cut and too large burden for V-cut as drilling length increased. As a result, the burden and spacing were reduced to practically appropriate amounts. In addition, the correlation between rock mass rate, RMR, and rock constant in blasting, c, was analyzed based on the data collected from twenty three tests of tunnel blasting. It was concluded that the correlation between them was fairly good enough to be applied in cut design. In order to check the validity of the modified methods and their practical applicability, test blasting was carried out at two different tunnel construction sites in Korea. The results were satisfactory in that the average rate of advance was 90% and the overbreak did not cause additional support. Futhermore, the developed program is capable of estimating peak particle velocity by using (a) the existing vibration equations, (b) the vibration equation obtained by test blasting to check out the practical applicability of the designed blasting pattern. Feedback is implemented into the program to adjust the designed blasting pattern and control the vibration.
机译:在这项研究中,已经开发出一种计算机程序来设计隧道爆破模式。该程序包括两个部分:一种是用于隧道爆破模式设计,另一种是用于爆破建模,以估计峰值粒子速度,碎裂分布和开挖破坏区。我们修改了Langefors建议的隧道爆破样式的设计方法,因为它在爆破实践中提供了不希望的样式,例如随着钻孔长度的增加,中心切口相当大,而V型切口的负担过大。结果,负担和间隔减小到实际上合适的量。此外,根据从二十三个隧道爆破试验中收集的数据,分析了岩石质量率RMR和爆破岩石常数c之间的相关性。结论是,它们之间的相关性足够好,可以应用于切割设计中。为了检查改进方法的有效性及其实际适用性,在韩国的两个不同的隧道施工现场进行了试验爆破。结果令人满意,因为平均前进速度为90%,并且爆发没有引起额外的支持。此外,开发的程序能够通过使用(a)现有的振动方程,(b)通过试验爆破获得的振动方程来估计设计爆破模式的实际适用性,从而估算峰值粒子速度。反馈被实现到程序中,以调整设计的爆破模式并控制振动。

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